Timothy Oladiran Ajiboye, Chemistry, Best Innovator Award

Dr. Timothy Oladiran Ajiboye: Researcher at University of the Free State, South Africa

Dr. Timothy Oladiran Ajiboye is a passionate and prolific researcher in the field of environmental chemistry, with strong expertise in nanotechnology, water remediation, and material science. He obtained his PhD in Chemistry from North-West University, South Africa, focusing on the development of advanced photocatalysts for removing heavy metal ions and organic pollutants from water. His academic and research journey spans over 15 years and includes teaching, supervision, project evaluation, and scholarly publishing. Dr. Ajiboye has authored and co-authored over 40 peer-reviewed journal articles and book chapters in internationally recognized journals and publishers. His professional career has included roles in Nigeria and South Africa, where he contributed to sustainable solutions in environmental pollution, public health, and advanced functional materials.

Online Profiles

ORCID Profile

Education

Dr. Ajiboye’s educational background spans top institutions in Nigeria and South Africa. He earned a PhD in Chemistry from North-West University (2022), where he specialized in nanomaterials for water purification. His MSc in Environmental Chemistry and Pollution Control was obtained from the University of Ibadan in 2014, with a thesis on e-waste and heavy metal contamination. He holds a B.Tech in Pure and Applied Chemistry (Second Class Upper) from Ladoke Akintola University of Technology (2010), where he began foundational research in adsorption science. His early education was completed in Ogbomoso, Nigeria, where he distinguished himself academically through secondary and primary levels, earning several local scholarships and academic leadership roles.

Research Focus

Dr. Ajiboye’s research is deeply interdisciplinary, focusing on environmental nanotechnology, water treatment, green chemistry, and materials science. He designs and synthesizes photocatalytic materials such as functionalized g-C₃N₄, metal sulfides, ceramic-polymer composites, and carbon-based adsorbents for the removal of pharmaceuticals, dyes, and heavy metals from aqueous environments. His recent work expands into the biomedical application of nanoparticles and eco-friendly synthesis routes. A major part of his research integrates advanced characterization tools (TGA, NMR, SEM, UV-Vis, etc.), and his goal is to create cost-effective, scalable technologies for real-world environmental problems. He is especially passionate about sustainable development and bridging science with community impact.

Experience

With over a decade of experience in academic, research, and teaching environments, Dr. Ajiboye has served in multiple capacities across institutions. He is currently a Postdoctoral Research Fellow at the University of the Free State and formerly at Nelson Mandela University, South Africa. He also holds the title of Extraordinary Senior Lecturer at NWU. Between 2015 and 2019, he lectured Cambridge Advanced Level Chemistry in Nigeria and served as Head of Science Department at multiple institutions. He has facilitated writing workshops, served as a Teaching Assistant, and contributed to curriculum development. His professional trajectory includes project supervision, thesis examination, academic mentorship, and participation in national science fairs and symposia.

Research Timeline & Activities

Dr. Ajiboye’s research journey began in 2009 with industrial training in quality control, followed by an NYSC community project in 2011, and an MSc research on e-waste in 2014. From 2020 onwards, his research output surged, especially during his PhD and subsequent postdoctoral tenures. Between 2021 and 2025, he has participated in major international conferences, hosted academic writing retreats, presented posters at global chemistry forums, and published more than 30 articles in just four years. He has supervised Honours and Master’s students, examined dissertations, served on project committees, and participated in scientific judging panels. He also plays active roles in capacity-building workshops across South Africa and beyond.

Awards & Honors

Dr. Ajiboye has received several awards and recognitions throughout his academic and leadership journey. These include bursaries from NWU and the Faculty of Natural and Agricultural Sciences (FNAS), a scholarship from the Oyo State Government, and a Pivotal Club Scholarship. He is a Fellow of the Young African Leadership Initiative (YALI), a program sponsored by former U.S. President Barack Obama. He earned commendation from the Benue State NYSC for outstanding personal development projects. Notably, he was second runner-up in the Faculty of Science’s 3-Minute Thesis competition in 2021 and in the 2022 Science Slam Competition organized by BALEWARE and NWU. These honors reflect his dedication to research excellence, community impact, and academic leadership.

Top Noted Publication

Among Dr. Ajiboye’s many high-impact publications, a standout work is his 2024 article in Chemical Papers titled “Indium (III) complexes: application as organic catalyst, precursor for chalcogenides nanoparticles and starting materials in the industry” (DOI: 10.1007/s11696-024-03411-8). This paper comprehensively explores the industrial utility of indium complexes in catalysis and nanotechnology. It has attracted significant attention for its novel synthesis approach and multidisciplinary relevance across materials chemistry, green synthesis, and industrial applications. The publication not only demonstrates Dr. Ajiboye’s expertise in inorganic-organometallic chemistry but also exemplifies the global impact and citation visibility of his work.

  1. Development of a semiconducting supramolecular copper(II)–metallogel for antimicrobial and microelectronic device applications
    RSC Advances, 2025
    DOI: 10.1039/D5RA01535A
    → Highlights: Dual-functional material with potential in electronics and biomedicine.

  2. Exploring the efficient antimicrobial applications of a novel supramolecular Hg(II)-metallogel derived from succinic acid acting as a low molecular weight gelator
    RSC Advances, 2025
    DOI: 10.1039/D4RA08575B
    → Highlights: Focus on low molecular weight gelators with antimicrobial activity.

  3. Investigating the potent antimicrobial properties of a supramolecular Zn(II)-metallogel formed from an isophthalic acid-based low molecular weight gelator
    RSC Advances, 2025
    DOI: 10.1039/D5RA03663A
    → Highlights: Antibacterial performance and soft material engineering.

  4. Investigating the potential of a self-healing semiconducting supramolecular Mg(II)-metallohydrogel in non-volatile memory design and its therapeutic properties towards bacteria-infected wound healing
    Materials Advances, 2025
    DOI: 10.1039/D4MA01238K
    → Highlights: Combines electronics, soft matter, and medical applications.

  5. Recent strategies for controlling the white mould fungal pathogen (Sclerotinia sclerotiorum) using gene silencing, botanical fungicides and nanomaterials
    Sustainable Food Technology, 2025
    DOI: 10.1039/D4FB00348A
    → Highlights: Interdisciplinary approach to sustainable crop protection.

Strengths for the Best Innovator Award

  1. Innovative Development of Dual-Functional Metallogels
    Dr. Ajiboye has pioneered the design and synthesis of supramolecular metallogels that uniquely combine antimicrobial properties with semiconducting behavior. These materials have transformative potential for both healthcare—through infection control—and advanced electronics, such as microelectronic devices and non-volatile memory. His work pushes the boundaries of soft material science by integrating multifunctionality and self-healing properties, marking a significant step forward in nanotechnology and material innovation.

  2. Advancement of Green Nanotechnologies for Water Remediation
    Through his research on eco-friendly photocatalysts and functionalized nanomaterials, Dr. Ajiboye has developed effective, scalable, and low-cost solutions for removing heavy metals, dyes, and pharmaceutical contaminants from polluted water. His work emphasizes green synthesis methods and sustainability, directly addressing critical global challenges in water security, environmental pollution, and public health. These innovations contribute to the realization of sustainable development goals by providing practical technologies for clean water access.

  3. Industrial Application of Organometallic Complexes
    Dr. Ajiboye’s work on Indium(III) complexes demonstrates innovative use of organometallic chemistry to create versatile catalysts and nanoparticle precursors. This research bridges fundamental inorganic chemistry with practical industrial applications, facilitating environmentally friendly catalytic processes and novel material production. His contributions have broad relevance to chemical manufacturing, green synthesis, and nanotechnology industries, making significant strides in linking academic research to real-world industrial challenges.

  4. Interdisciplinary Innovation in Sustainable Agriculture
    By integrating nanotechnology, gene silencing techniques, and botanical fungicides, Dr. Ajiboye has developed novel, eco-conscious approaches to managing crop diseases such as white mould caused by Sclerotinia sclerotiorum. His interdisciplinary strategy reduces reliance on harmful synthetic chemicals, promoting sustainable crop protection methods. This work enhances food security and supports environmental health, representing forward-thinking innovation at the intersection of agriculture, biotechnology, and nanoscience.

  5. Leadership in Research Capacity Building and Community Impact
    Dr. Ajiboye’s innovation extends beyond laboratory research into leadership roles in education and community development. He has actively mentored numerous postgraduate students, facilitated academic writing workshops, and contributed to curriculum development. Through these efforts, he fosters scientific capacity building and encourages the translation of cutting-edge research into locally relevant solutions. His dedication to community engagement and knowledge transfer exemplifies innovation in scientific leadership and sustainable development.

Nirmal Kaur, Computer Science, Best Innovator Award

Dr. Nirmal Kaur: Associate Professor at UIET, PU, India

Dr. Nirmal Kaur is an Associate Professor in the Department of Computer Science and Engineering at the University Institute of Engineering and Technology (UIET), Panjab University, Chandigarh. With over 20 years of teaching and research experience, Dr. Kaur has made significant contributions to the fields of Machine Learning, Deep Learning, Sentiment Analysis, and Distributed Computing. She has been the Principal Investigator for multiple high-impact research projects, including the development of multimodal emotion detection systems and cybersecurity challenges for women users. In addition to her research, Dr. Kaur has mentored numerous Ph.D. and M.Tech. students, guiding them to success in diverse areas such as deepfake detection, energy-efficient scheduling, and multimodal emotion recognition. Her work is internationally recognized, and she has published extensively in top-tier journals and conferences.

Online Profiles

Citations & Impact Metrics

  • Total Citations: 329

  • h-index: 11

  • i10-index: 11

These metrics reflect Dr. Kaur’s significant contribution to her research field, with numerous citations highlighting the impact and relevance of her work in areas like emotion detection, deepfake identification, and distributed computing.

Education

Dr. Kaur earned her Ph.D. in Computer Science and Engineering from I.K. Gujral Punjab Technical University, Jalandhar, in November 2017. Her doctoral research focused on energy-efficient scheduling techniques in distributed computing systems. She was supervised by Prof. Dr. Savina Bansal, a distinguished researcher in the field. She holds an M.Tech. in Computer Science and Engineering from Baba Banda Singh Bahadur Engineering College, Punjab, where she achieved distinction and was a top scorer in her batch. She completed her B.Tech. in Computer Science and Engineering at Punjabi University, Patiala, in 2003. Throughout her academic career, Dr. Kaur has demonstrated excellence, both in terms of research output and academic achievement.

Research Focus

Dr. Kaur’s research primarily focuses on advanced applications of Machine Learning and Deep Learning, particularly in emotion detection across various modalities, including text, audio, video, and multimodal data. She has made pioneering contributions to the detection of deepfakes in multimedia content, using cutting-edge techniques in computer vision and audio signal processing. Additionally, Dr. Kaur is deeply engaged in distributed computing research, working on energy-efficient scheduling algorithms for heterogeneous systems, cloud computing, and task scheduling. Her work not only advances theoretical frameworks but also focuses on real-world applications, such as improving cybersecurity, enhancing multimedia forensics, and contributing to energy-aware computing systems in large-scale environments.

Experience

Dr. Kaur’s academic career spans over two decades. She is currently serving as an Associate Professor at UIET, Panjab University, since 2024. Prior to this, she was an Assistant Professor at the same institution from 2011 to 2024, where she contributed extensively to teaching and research. Before joining UIET, Dr. Kaur worked as an Assistant Professor at Bhai Gurdas Institute of Engineering and Technology, Sangrur, and Swami Vivekanand Institute of Engineering and Technology. During her career, she has taught various undergraduate and postgraduate courses in Computer Science and Engineering. Her expertise lies in Deep Learning, Distributed Computing, Artificial Intelligence, and Cybersecurity. In addition to her teaching, Dr. Kaur has actively participated in departmental administration and has been a member of several academic committees.

Research Timeline & Activities

  • 2023-2025: Dr. Kaur is leading the “Development of Multimodal and Multilingual Emotion Detection System,” funded by IIT Mandi iHub & HCI Foundation. This project aims to enhance emotion detection systems by incorporating multiple languages and data modalities.

  • 2020-2021: Principal Investigator for a research project sponsored by the National Commission for Women, Govt. of India, focused on cybersecurity challenges and cybercrimes against women in Punjab. The project successfully examined the specific issues faced by women users in cyber space.

  • 2016-Present: Dr. Kaur has been mentoring Ph.D. candidates, guiding their research on topics like deepfake detection, energy-aware scheduling in cloud environments, and human pose estimation.

  • Ongoing: Actively working on deepfake detection algorithms, multimodal emotion recognition, and developing energy-efficient scheduling algorithms for heterogeneous computing environments. Dr. Kaur is also reviewing articles for top-tier journals and contributing to the academic community through invited talks and workshops.

Awards & Honors

Dr. Kaur has been recognized with several prestigious awards throughout her academic career. She was awarded the Best Research Award from the Department of Computer Science and Engineering, UIET, in 2017, in recognition of her outstanding contributions to research. She has also received a Best Paper Award for her work presented at the 4th International Conference on Machine Intelligence and Signal Processing, NIT Raipur, 2022. In addition to these accolades, she was honored with a scholarship by the Punjab Government for her academic performance in matriculation. Dr. Kaur’s research contributions in emotion detection and cybersecurity have earned her recognition both within India and internationally.

Top Noted Publication

Dr. Kaur has authored and co-authored several influential papers, with some of her top publications including:

  • Review of Audio Deepfake Detection Techniques: Issues and Prospects

    • Authors: A. Dixit, N. Kaur, S. Kingra

    • Journal: Expert Systems, 40(8), e13322

    • Cited By: 48

    • Year: 2023

  • Emergence of Deepfakes and Video Tampering Detection Approaches: A Survey

    • Authors: S. Kingra, N. Aggarwal, N. Kaur

    • Journal: Multimedia Tools and Applications

    • Cited By: 35

    • Year: 2022

  • LBPNet: Exploiting Texture Descriptor for Deepfake Detection

    • Authors: S. Kingra, N. Aggarwal, N. Kaur

    • Journal: Forensic Science International: Digital Investigation, 42, 301452

    • Cited By: 32

    • Year: 2022

  • Major Convolutional Neural Networks in Image Classification: A Survey

    • Authors: N. Kumar, N. Kaur, D. Gupta

    • Conference: International Conference on IoT Inclusive Life (ICIIL 2019)

    • Cited By: 25

    • Year: 2020

  • A Survey of Routing Protocols in Wireless Sensor Networks

    • Authors: N. Kaur, S. Verma, D. Kavita

    • Journal: IJET, 7(4.12), 20-25

    • Cited By: 24

    • Year: 2018

Strength for the Best Innovator Award

Dr. Nirmal Kaur’s innovative contributions span several important areas in the fields of Computer Science and Engineering. The following strengths highlight why she is considered an exceptional innovator in her field:

1. Pioneering Work in Deepfake Detection

Dr. Kaur’s innovative research in deepfake detection has led to significant advancements in multimedia forensics. Her approach integrates both audio and video signal processing, helping to address critical issues in identifying manipulated content. By developing cutting-edge techniques for detecting deepfake videos and audio, she has set new standards for accuracy and reliability in this fast-evolving domain.

2. Multimodal Emotion Detection Systems

Dr. Kaur has made groundbreaking strides in the development of multimodal emotion detection systems. By combining various data modalities like text, audio, and video, her research allows for a more comprehensive and nuanced understanding of human emotions. This work has broad applications in areas such as sentiment analysis, human-computer interaction, and mental health monitoring.

3. Energy-Efficient Scheduling in Distributed Computing

Her research on energy-efficient scheduling techniques for distributed computing systems has been transformative. Dr. Kaur’s work focuses on improving the energy consumption of heterogeneous systems, ensuring that computational tasks are optimized for power usage without compromising performance. This has far-reaching implications for cloud computing and large-scale data center management.

4. Cybersecurity Challenges for Women Users

Dr. Kaur’s work on cybersecurity, particularly focusing on the challenges faced by women users in the digital space, has addressed a critical gap in the understanding of gender-specific cybercrimes. By leading the National Commission for Women’s project, she has not only identified key security issues but also proposed actionable solutions to protect vulnerable users from online harassment and cybercrimes.

5. Mentorship and Leadership in Research

Dr. Kaur’s dedication to mentoring and guiding students is another area where she demonstrates her innovation. By supervising numerous Ph.D. and M.Tech. candidates on cutting-edge research topics such as multimodal emotion recognition, deepfake detection, and cloud computing, she has fostered a new generation of innovators. Her leadership in research has helped cultivate a robust academic and research environment that encourages creativity and critical thinking.

Kumari Deepika, Materials Science, Best Innovator Award

Dr. Kumari Deepika: Assistant Professor at AIIMS-CAPFIMS, Maidan Garhi, New Delhi, India

Dr. Kumari Deepika is an accomplished Prosthodontist and Assistant Professor currently working at AIIMS-CAPFIMS, New Delhi. With a passion for dental restoration, she specializes in advanced prosthodontic treatments, including full mouth rehabilitation, implant prosthodontics, and maxillofacial prosthetics. After completing her MDS in Prosthodontics from Banaras Hindu University (BHU), Varanasi, she has continuously contributed to both academic and clinical spheres. Dr. Deepika’s expertise lies in implantology, smile designing, and treatment of edentulous patients, and she is also known for her clinical work on complex maxillofacial prosthetics in post-surgical carcinoma and mucormycosis cases. Along with her clinical practice, Dr. Deepika is highly active in research, having published multiple papers on implant stability, bone regeneration, and tactile sensibility.

Online Profiles

Google Scholar Profile

  • Total Citations: 18

  • h-index: 3

  • i10-index: 0

  • Citations Since 2020: 18
    These numbers reflect steady engagement with her work, particularly in clinically relevant areas such as implant loading protocols, maxillofacial prosthodontics, and denture fabrication techniques. Her publications have been cited in peer-reviewed journals, case series, and literature reviews by both domestic and international researchers. With consistent contributions and interdisciplinary collaborations, her research impact is expected to grow further.

Dr. Kumari Deepika is an active member of the ResearchGate community where she shares her research findings and connects with fellow researchers globally. Her ResearchGate H-index of 3 reflects the growing recognition of her contributions to Prosthodontics and Implantology. She has also presented her work at several national and international platforms, and her contributions are highly regarded by peers in the field. Apart from being a Life Member of the Indian Prosthodontic Society (IPS), she is also a member of the Indian Society of Prosthodontics – Restorative – Periodontics (ISPRP), where she engages in continuous learning and development. Through her profiles and online engagements, Dr. Deepika promotes evidence-based practice and advances the field of prosthodontics.

Education

Dr. Deepika’s academic journey began with her Bachelor of Dental Surgery (BDS), which she completed in 2014 from Himachal Institute of Dental Sciences, Paonta Sahib, securing a commendable 70.9%. She was consistently a top performer throughout her education, earning a Gold Medal for securing First Position in BDS at HP University, Shimla. Her academic excellence continued during her Master of Dental Surgery (MDS) in Prosthodontics at the Faculty of Dental Sciences, Institute of Medical Sciences, Banaras Hindu University, Varanasi, where she graduated with a score of 76.8% in 2019. Throughout her academic career, Dr. Deepika maintained a keen interest in research and was highly involved in hands-on clinical training, which further solidified her expertise in prosthodontics and implantology.

Research Focus

Dr. Kumari Deepika’s primary research focus is on prosthodontics, particularly in the areas of implantology, bone regeneration, and maxillofacial prosthetics. Her research aims to bridge the gap between clinical practice and innovative treatment modalities, such as immediate implant loading protocols and guided bone regeneration (GBR). She has explored the impact of these techniques on implant stability, osseointegration, and tactile sensibility in partially edentulous patients. Another key area of her research is the development of advanced prosthetic solutions for complex maxillofacial defects, including post-surgical rehabilitation in cases of oral carcinoma and mucormycosis. Through her work, she strives to improve treatment outcomes for patients suffering from severe dental and facial deformities.

Experience

Dr. Kumari Deepika has accumulated significant clinical and academic experience over the years. She is currently an Assistant Professor at AIIMS-CAPFIMS, New Delhi, where she is involved in both teaching and clinical supervision of dental students and residents. Prior to this, she served as a Reader at I.T.S Dental College, Ghaziabad, where she taught postgraduate students and guided them through complex clinical procedures in prosthodontics. From June 2020 to May 2023, Dr. Deepika worked as a Senior Resident at Maulana Azad Institute of Dental Sciences, New Delhi, further enhancing her skills in managing prosthodontic cases involving implants and full mouth rehabilitation. Her expertise in clinical practice is complemented by her postgraduate education from BHU, where she specialized in advanced implant prosthodontics and rehabilitation.

Research Timeline & Activities

Dr. Deepika’s research activities span over a period of several years, starting with her postgraduate dissertation on implant stability and tactile sensibility in patients receiving immediate versus delayed implant loading protocols. She has also investigated the use of guided bone regeneration (GBR) techniques for bone augmentation in the esthetic zone and has contributed to the understanding of implantsupported overdentures for patients with severely resorbed alveolar ridges. Over the years, she has expanded her research into maxillofacial prosthetics, focusing on the rehabilitation of patients with maxillectomy defects following oral cancer surgery and mucormycosis. Dr. Deepika is currently involved in ongoing research regarding the reversal of osseodisintegration in dental implants, which has the potential to significantly impact the field of implantology. Her research timeline includes multiple in-vivo studies, clinical case reports, and systematic reviews that contribute to both academic and practical advancements in prosthodontics.

Awards & Honors

Dr. Kumari Deepika has been the recipient of several prestigious awards throughout her academic and professional career. In recognition of her outstanding academic achievements, she was awarded Gold Medals for securing First Position in BDS by HP University, Shimla. She has also been honored with the Raj Mata Shanti Devi Award and the Hans Rattan Lakhanpal Award by the university. In addition, she was recognized by the Jawaharlal Nehru Memorial Fund, New Delhi, for her exemplary performance in BDS. Most recently, Dr. Deepika was conferred the WCOI Diplomate Bronze Award in November 2024 for her exceptional contributions to the field of Implantology. These accolades reflect her commitment to excellence in both academia and clinical practice.

Top Noted Publication

One of Dr. Deepika’s most notable publications is “Reversal of Osseodisintegration: An Asset for Implantology”, published in the International Journal of Research and Reports in Dentistry in 2025. This pioneering work examines the possibility of reversing osseointegration failure in dental implants, which could revolutionize the way dental implants are managed in cases of early implant failure. In addition, her publication titled “Hollowing of Delayed Surgical Obturator in Maxillectomy Defects Secondary to Mucormycosis” (2022) has been widely cited for its innovative approach to managing post-surgical oral rehabilitation in the post-COVID-19 era. Dr. Deepika has contributed extensively to research on guided bone regeneration, implant stability, and maxillofacial prosthetics, all of which are pivotal to the advancement of clinical practice in Prosthodontics.

Among her numerous publications, Dr. Deepika’s most significant contribution is the original research article titled “Evaluation of active tactile sensibility in a single-tooth implant opposing a natural tooth with either an immediate or delayed functional loading protocol”, published in the prestigious Journal of Prosthetic Dentistry in 2023. This clinical study provided valuable insight into neurosensory feedback mechanisms around implants and has been cited in ongoing research on osseoperception. It highlights her expertise in designing and conducting clinical trials with real-world applications in patient rehabilitation and prosthodontic treatment planning.

Fabrication of Complete Dentures Using Neutral Zone Technique in a Patient with Severely Resorbed Alveolar Ridges – A Case Report
Kumari Deepika, Atul Bhatnagar, Ankita Singh
International Journal of Health Sciences & Research, 2018; 8(4): 227–232
Citations: 5
This case report highlights the effectiveness of the neutral zone technique in restoring function and esthetics in patients with severely resorbed ridges. It is widely cited for its clinical relevance in complex denture fabrication scenarios.

Application of Polyvinyl Chloride Sheet as Delayed Surgical Obturator in Maxillectomy Defects Secondary to Mucormycosis – A Case Series
Kumari Deepika, Shefali Goel, Rekha Gupta
Journal of Oral Biology and Craniofacial Research, 2023; 13: 207–209
Citations: 3
This publication presents an innovative, cost-effective approach using PVC sheets for obturator fabrication in post-mucormycosis patients. It has gained recognition for its practicality in resource-limited settings.

Modified Extraoral Retentive Technique for Retaining Obturator in Bilateral Maxillectomy Defects Secondary to Mucormycosis in Healing Phase
Kumari Deepika, Rekha Gupta
International Journal of Prosthodontics & Restorative Dentistry, 2022; 12(1): 30–35
Citations: 3
This article introduces a unique extraoral retentive strategy for maxillofacial prosthetic retention during the healing phase, offering enhanced patient comfort and prosthesis stability.

Management of Feeding Problems in Infants with Cleft Palate and Review on Pierre-Robin Syndrome
Kumari Deepika, Atul Bhatnagar, Richa Bansal, Ankita Verma
Journal of Multidisciplinary Dental Research, 2022; 8(1): 33–37
Citations: 3
This paper reviews challenges in feeding infants with cleft conditions and outlines effective prosthetic and non-invasive feeding aids, contributing to neonatal care strategies.

Rehabilitation of a Hemi-Maxillectomy Patient with a Cast Partial Obturator Prosthesis – A Clinical Report
Kumari Deepika, Aprajita, Atul Bhatnagar
International Journal of Advanced Research, 2018; 6(1): 317–320
Citations: 2*
Focused on the prosthetic management of post-maxillectomy defects, this clinical report showcases the use of cast partial frameworks in maxillofacial rehabilitation. It is often referenced in case-based prosthodontic literature.

Strengths for Best Innovator Award

1. Pioneering Use of Polyvinyl Chloride in Maxillofacial Obturators

Dr. Kumari Deepika introduced a cost-effective innovation by utilizing polyvinyl chloride (PVC) sheets for the fabrication of delayed surgical obturators in maxillectomy defects secondary to mucormycosis. This method provided a durable, hygienic, and affordable alternative to conventional materials and has shown high adaptability in low-resource settings, improving the quality of care for underprivileged patients.

2. Advancement of Neurosensory-Based Implant Protocols

In her publication in the Journal of Prosthetic Dentistry, Dr. Deepika clinically evaluated active tactile sensibility around dental implants, comparing immediate versus delayed loading protocols. Her work is among the few Indian contributions addressing osseoperception, bridging sensory neurology with implant prosthodontics, and influencing how implant rehabilitation is approached in clinical practice.

3. Modified Extraoral Retentive Technique for Maxillectomy Prosthesis

She developed and documented a modified extraoral retentive technique for retaining obturators in bilateral maxillectomy defects during the healing phase. This approach eliminated intraoral retention limitations in compromised anatomy, offering better patient compliance and hygiene maintenance, especially critical in post-COVID mucormycosis cases.

4. Integration of Digital and Conventional Prosthodontics

Dr. Deepika has consistently promoted hybrid prosthodontic workflows, integrating digital scanning, planning, and 3D design with traditional prosthetic techniques. Her research and teaching focus on implementing “Scan-Plan-Design-Print” digital workflows have prepared postgraduate students and clinicians for transitioning into evidence-based digital prosthodontics.

5. Multidisciplinary Approach to Pediatric Cleft Care

In her research on managing feeding difficulties in infants with cleft palate and Pierre-Robin syndrome, Dr. Deepika emphasized a multidisciplinary prosthetic approach. By customizing feeding plates and collaborating with pediatricians and speech therapists, she has improved the survival, nutrition, and early development of neonates with craniofacial deformities.

Pramod Gawal, Engineering, Best Researcher Award

Dr. Pramod Gawal: Researcher at IIT Guwahati, India

Dr. Pramod Gawal is an accomplished chemical engineer specializing in sustainable catalytic processes for environmental and energy applications. With a PhD from IIT Guwahati, he focuses on advancing photocatalysis, electrocatalysis, and photoelectrocatalysis for CO₂ reduction and water splitting. His expertise spans both experimental synthesis of nanomaterials and theoretical modeling through Density Functional Theory (DFT), enabling a comprehensive approach to tackling energy and pollution challenges. Beyond research, he is active in teaching and mentoring, committed to fostering scientific curiosity and innovation.

Online Profiles

Google Scholar Profile

Dr. Pramod Gawal has accumulated a total of 190 citations for his research contributions, with an h-index of 7 and an i10-index of 5, reflecting his impact in the field. His recent work has garnered 148 citations, with an h-index of 5 and an i10-index of 4, showcasing a strong and growing influence in photocatalysis and downstream processing research.

Education

Dr. Gawal earned his PhD in Chemical Engineering from the Indian Institute of Technology Guwahati in 2025, where his doctoral research involved designing bioinspired nanostructured materials for photocatalytic CO₂ conversion. Prior to this, he completed his Master of Chemical Engineering at the Institute of Chemical Technology, Mumbai, in 2017, focusing on advanced oxidation processes. His foundational training includes a Bachelor of Technology degree from Laxminarayan Institute of Technology, Nagpur, obtained in 2014, where he worked on simulation of multicomponent distillation systems.

Research Focus

His research interests lie primarily in photocatalysis and electrocatalysis, exploring novel nanocomposites and heterostructures for efficient solar-driven CO₂ reduction and hydrogen generation. He also investigates downstream processing techniques for bio-based chemicals, such as 2,3-butanediol, employing aqueous two-phase extraction and hybrid distillation methods. Additionally, he applies Density Functional Theory to understand catalyst behavior at the atomic level, enabling rational design of materials with enhanced activity and selectivity for environmental remediation and renewable energy applications.

Experience

Dr. Gawal has been a Prime Minister’s Research Fellow at IIT Guwahati since 2022, leading projects on bioinspired photocatalysts. His prior experience includes a Project Associate role at The Energy and Resources Institute (TERI), New Delhi, where he developed and optimized downstream purification methods for fermentation broths. Earlier, as a Project Assistant at the Institute of Chemical Technology, Mumbai, he synthesized catalysts for wastewater treatment, dye degradation, and energy applications, gaining hands-on experience in catalyst fabrication and performance evaluation.

Research Timeline & Activities

His PhD work from 2022 to 2025 involved developing ternary nanocomposites for photocatalytic CO₂ reduction to value-added chemicals. Concurrently, he contributed to projects on downstream purification of fermentation broth using aqueous two-phase systems and hybrid distillation techniques. Dr. Gawal has actively participated in national and international scientific events, presenting his findings at conferences such as the Green and Sustainable Chemistry Conference (Germany) and the International Conference on Advanced Nanomaterials & Nanotechnology. He has also undergone specialized training in Density Functional Theory modeling and fuel cell technologies to enhance his research capabilities.

Awards & Honors

Dr. Gawal’s research excellence has been recognized through prestigious awards, including the Prime Minister’s Research Fellowship and MHRD Teaching Fellowship. He has received multiple best oral and poster presentation awards at international conferences, reflecting his strong communication skills and impactful research contributions. His peer-review work for top-tier journals like Separation and Purification Technology and ACS Sustainable Chemistry & Engineering further attests to his expertise and standing in the scientific community.

Top Noted Publication

One of Dr. Gawal’s most influential publications is titled “Plant-Derived Phytochemicals for the Synthesis of p-n Junction CuO/CdS Heterostructures for Photocatalytic CO₂ Reduction to Ethanol and Carbon Monoxide” published in ACS Applied Energy Materials (2025). This study highlights green synthesis approaches and demonstrates high photocatalytic efficiency, contributing significant insights into sustainable material design for solar fuel production. The paper is accessible at https://doi.org/10.1021/acsaem.5c00497.

  • Solar light-assisted photocatalytic degradation of methylene blue with Mo/TiO2: A comparison with Cr- and Ni-doped TiO2
    SM Chaudhari, PM Gawal, PK Sane, SM Sontakke, PR Nemade
    Research on Chemical Intermediates, 44(5), 3115-3134, 2018
    Citations: 81

  • Vegetal route for synthesis of CQDs/CdS nanocomposites for photocatalytic reduction of CO2 to methanol under visible light
    PM Gawal, AK Golder
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 683, 133068, 2024
    Citations: 37

  • Advances and challenges in bio-based 2,3-BD downstream purification: A comprehensive review
    PM Gawal, S Subudhi
    Bioresource Technology Reports, 24, 101638, 2023
    Citations: 23

  • Plant-Based Phytochemicals for Synthesis of Z-Scheme In2O3/CdS Heterostructures: DFT Analysis and Photocatalytic CO2 Reduction to HCOOH and CO
    PM Gawal, AK Golder
    Langmuir, 40(20), 13538-13549, 2024
    Citations: 12

  • Hybrid extraction distillation for downstream purification of 2,3-butanediol, and ethanol from fermentation broth
    PM Gawal, D Mudgil, S Subudhi
    Bioresource Technology Reports, 24 (August), 101649, 2023
    Citations: 11

Strengths for Best Researcher Award

  1. Innovative Research in Sustainable Catalysis
    Dr. Gawal’s work pioneers green and sustainable catalytic processes, including photocatalytic CO₂ reduction and water splitting, addressing critical global challenges of climate change and clean energy production through advanced nanomaterials and bio-inspired approaches.

  2. Interdisciplinary Expertise with Experimental and Theoretical Synergy
    His unique combination of experimental synthesis of nanocomposites and theoretical Density Functional Theory (DFT) modeling enables comprehensive understanding and rational design of catalysts, significantly advancing material science and environmental chemistry.

  3. Consistent High Impact Scholarly Output
    With over 190 citations, an h-index of 7, and numerous publications in high-impact journals, Dr. Gawal has demonstrated a strong and growing influence in photocatalysis, bio-based chemical processing, and nanotechnology fields, with several papers receiving international recognition.

  4. Leadership and Mentorship in Research
    As a Prime Minister’s Research Fellow leading cutting-edge projects at IIT Guwahati and mentoring young researchers, Dr. Gawal exemplifies leadership, fostering innovation and scientific curiosity in the next generation of engineers and scientists.

  5. Active Engagement and Recognition in the Scientific Community
    Dr. Gawal’s participation in prestigious international conferences, receipt of multiple awards including the Prime Minister’s Research Fellowship, and peer-review contributions to top journals highlight his commitment to scientific excellence and knowledge dissemination.

Maria Bashir, Medicine, Innovative Researcher Award

Dr. Maria Bashir: Senior Resident at Government Medical College Srinagar, India

Dr. Maria Bashir is a dedicated and accomplished medical professional specializing in Physiology, with a passion for advancing medical research and education. After completing her MBBS from Holy Family Red Crescent Medical College in Dhaka, Bangladesh, she pursued an MD in Physiology from Government Medical College Srinagar, where she deepened her understanding of human physiology and its application in clinical medicine. Currently serving as a Senior Resident in the Department of Physiology at GMC Srinagar, Dr. Bashir is committed to both her clinical duties and her research work. She has presented her research on topics such as metabolic syndrome, oxidative stress, and gastrointestinal diseases at prestigious national and international conferences. With a deep interest in integrating medical research into clinical practice, Dr. Bashir continues to contribute to the scientific community with her findings aimed at improving patient care and disease management.

Online Profiles

ORCID Profile

Education

Dr. Maria Bashir’s educational journey has been a blend of rigorous clinical training and intensive research-focused study. She completed her MBBS at Holy Family Red Crescent Medical College in Dhaka, Bangladesh, between 2008 and 2013. This program provided her with a solid foundation in general medicine, after which she further specialized in Physiology by pursuing her MD at Government Medical College Srinagar from 2020 to 2023. In addition to her medical degrees, Dr. Bashir has earned a Basic Course in Biomedical Research (BCBR) certification in March 2022, which equipped her with essential skills in research methodology and data analysis. Her educational path has enabled her to blend clinical knowledge with academic rigor, ensuring that her approach to healthcare and research is both practical and evidence-based.

Research Focus

Dr. Bashir’s research interests lie at the intersection of clinical physiology, molecular biology, and medical toxicology. Her primary focus includes studying the genetic factors influencing common dermatological conditions like acne vulgaris, as well as investigating the role of pro-inflammatory cytokines and oxidative stress in disease progression. She has also conducted extensive research on the prevalence of metabolic syndrome, particularly among medical students in the Kashmir Valley, shedding light on lifestyle and genetic factors affecting health. Dr. Bashir is deeply interested in how environmental toxins, such as organophosphorus compounds, affect human health, particularly in relation to oxidative stress. Additionally, her work on the correlation between serum vitamin D3 levels and gastrointestinal disorders, such as irritable bowel syndrome, aims to address emerging health concerns in the population. Overall, her research is driven by a desire to understand the underlying mechanisms of diseases to improve diagnostics and therapeutic strategies.

Experience

Dr. Bashir’s professional experience spans across several prestigious institutions, where she has acquired diverse clinical and academic expertise. She began her career as a Junior Resident in the Department of Gynecology and Obstetrics at SKIMS Medical College, Bemina, Srinagar in 2016, where she gained valuable hands-on experience in women’s health. Later, she transitioned to the Department of Radiodiagnosis at the same institution, broadening her exposure to medical imaging techniques. In 2019, she served as a Demonstrator in the Department of Forensic Medicine at SKIMS Medical College, where she taught undergraduate students and contributed to forensic research. After completing her MD in Physiology, Dr. Bashir continued her clinical training as a Senior Resident in the Department of Physiology at GMC Srinagar, where she currently contributes to both the academic curriculum and ongoing research. Throughout her career, Dr. Bashir has balanced clinical duties with a focus on research, actively participating in and leading studies that explore various medical conditions and treatments.

Research Timeline & Activities

Dr. Bashir’s research activities span across multiple years and have consistently contributed to the scientific community. Her research journey began during her undergraduate medical education and continued through her MD program. In 2021, she conducted a cross-sectional study on the prevalence of metabolic syndrome among first-year medical students in Kashmir, which was later presented at the 7th Annual National Conference of Association of Physiologists of India (ASSOPICON-2021). The study highlighted the role of lifestyle and genetics in the early onset of metabolic syndrome in this population. She further expanded her research into toxicology, focusing on the relationship between oxidative stress and the severity of acute organophosphorus poisoning. Dr. Bashir’s research on vitamin D3 levels in patients with irritable bowel syndrome was published in 2021 and explored the complex relationship between micronutrient deficiencies and gastrointestinal disorders. In 2023, she participated in the Uro-Surg Urology and Surgery Twin Conference in New Delhi, presenting her findings on Noonan Syndrome and the multidisciplinary approach required for its management. Dr. Bashir is actively involved in several ongoing research projects, ranging from genetic predisposition studies to large-scale clinical trials assessing the impact of various treatments on chronic health conditions.

Awards & Honors

Dr. Maria Bashir has received numerous accolades for her contributions to medical research and education. Among her most notable achievements is the Best Oral Presentation Award at the PREPARE 2021 conference, organized by Sri Ramachandra Institute of Higher Education and Research in Chennai, where her research on vitamin D3 levels in patients with irritable bowel syndrome garnered widespread recognition. Her ability to present complex scientific concepts in an accessible and engaging manner has been lauded by peers and mentors alike. In addition to the oral presentation award, Dr. Bashir’s research has been acknowledged in various academic and clinical circles, earning her the respect of her colleagues and a solid reputation in the field of Physiology and medical education.

Top Noted Publication

Dr. Bashir’s MD thesis titled “Evaluation of Genetic Predisposition, Levels of Pro-inflammatory Cytokines, and Sebum Excretion Rate in Acne Vulgaris Patients of Kashmiri Origin” stands as one of her most significant contributions to medical research. This study, which explored genetic and environmental factors influencing acne development in a specific demographic, was published in a peer-reviewed journal and has been cited in numerous studies. Another top publication is “Buzz Session as an Active Learning Method in Medical Undergraduate Physiology Teaching” (2023), co-authored with colleagues, which examined the effectiveness of active learning techniques in enhancing student engagement and learning outcomes in Physiology. Her research on the correlation between oxidative stress and organophosphorus poisoning has also been influential in the field of toxicology, contributing to a better understanding of the pathophysiological mechanisms behind acute poisoning cases. Dr. Bashir’s publications reflect her dedication to expanding knowledge in medical research, particularly in areas related to disease mechanisms, toxicology, and medical education.

Publication Overview
  • Title: Buzz Session as an Active Learning Method in Medical Undergraduate Physiology Teaching—An Institutional-Based Study

  • Journal: Medical Science Educator

  • DOI: 10.1007/s40670-023-01882-0

  • Contributors:

    • Suhail Ahmad Gilkar (Author)

    • Iram Jaan (Author)

    • Shayees Arawa (Author)

    • Mah para Nyiem (Author)

    • Maria Bashir (Author)

  • Published: September 6, 2023

  • Research Focus: This study explored the effectiveness of Buzz Sessions, an active learning technique, in enhancing undergraduate medical students’ engagement and learning outcomes in Physiology teaching. The research was conducted at an institutional level, offering insights into how active learning can be integrated into medical education.

Significance:

The paper highlights the importance of interactive and student-centered teaching methodologies, like Buzz Sessions, which encourage peer-to-peer learning and foster critical thinking. The findings could contribute to modernizing the way Physiology and other medical subjects are taught in undergraduate courses, making learning more dynamic and student-oriented.

Strength for the Innovative Researcher Award:

1. Integration of Active Learning in Medical Education

Dr. Bashir’s pioneering work in integrating Buzz Sessions as an active learning method in medical undergraduate Physiology teaching has garnered significant attention. This innovative approach fosters a more interactive, student-centered learning environment, moving away from traditional, passive lecture formats. Her research shows that such active learning techniques increase student engagement, improve critical thinking, and enhance the overall understanding of complex physiological concepts. By presenting this method in her publication, Dr. Bashir has provided a valuable model for educators to incorporate into their teaching practices. This aligns with her passion for transforming medical education to better meet the needs of future healthcare professionals.

2. Focus on Translational Research in Physiology

Dr. Bashir’s research demonstrates her commitment to translating basic scientific knowledge into clinical applications. Her MD thesis on the genetic predisposition, pro-inflammatory cytokine levels, and sebum excretion in acne vulgaris patients of Kashmiri origin is a prime example of how she links molecular and clinical research. By focusing on genetic factors and cytokine activity, she has provided insights into how these factors may influence dermatological conditions, which could eventually lead to better diagnostic and therapeutic strategies for acne vulgaris. This approach bridges the gap between basic science and clinical medicine, reflecting her ability to conduct impactful, patient-centered research.

3. Innovative Studies on Toxicology and Disease Mechanisms

Dr. Bashir’s research on the correlation between oxidative stress and acute organophosphorus poisoning stands out as an innovative exploration in medical toxicology. Through her work, she has identified the underlying pathophysiological mechanisms of organophosphorus poisoning, particularly the role oxidative stress plays in disease severity. This research not only provides deeper insights into poisoning mechanisms but also has the potential to guide clinical interventions and improve patient outcomes in poisoning cases. Dr. Bashir’s work in this area reflects her innovative approach to toxicology research, contributing to the understanding of environmental health risks.

4. Multidisciplinary Research Approach

Dr. Bashir’s interest in a multidisciplinary research approach is evident in her participation in the Uro-Surg Urology and Surgery Twin Conference, where she presented on Noonan Syndrome and the importance of a multidisciplinary management approach. This type of research, which combines knowledge from genetics, endocrinology, cardiology, and surgery, showcases her ability to address complex health issues through a collaborative and integrative perspective. Her work emphasizes the importance of treating patients from a holistic perspective, which could significantly improve patient care in various clinical settings.

5. Promoting Student Wellness through Metabolic Research

Dr. Bashir’s research into the prevalence of metabolic syndrome among first-year medical students in Kashmir exemplifies her forward-thinking approach to public health. Her findings, which suggest that lifestyle and genetic factors significantly contribute to metabolic syndrome, aim to improve early health education and lifestyle interventions for young adults. By targeting medical students, Dr. Bashir has emphasized the importance of health promotion within the medical community itself, making her research not just relevant for public health at large but also for medical practitioners who will go on to shape healthcare practices. This research highlights her proactive approach to tackling emerging health issues before they escalate.

Pradeep Mishra, Engineering, Best Innovator Award

Dr. Pradeep Mishra: Senior Assistant Professor at VIT Bhopal University, India

Dr. Pradeep Kumar Mishra is an accomplished researcher and academic leader with over 16 years of experience in the fields of Artificial Intelligence and Machine Learning. He currently holds the position of Program Chair and Head of the Department of AI & ML at VIT Bhopal University. His expertise spans a wide array of topics, including neural networks, deep learning, and environmental data modeling. He has contributed extensively to both theoretical research and practical applications, publishing numerous articles in high-impact journals and securing multiple patents. Known for his dedication to mentoring students and fostering innovation, Dr. Mishra actively collaborates with national and international research communities.

Online Profiles

Google Scholar Profile

Dr. Pradeep Kumar Mishra has a strong and growing research impact, with a total of 497 citations across his publications. His work has earned him an h-index of 8 and an i10-index of 7, reflecting the consistent quality and relevance of his research. Additionally, his collaborative and interdisciplinary papers have contributed 252 citations, with an h-index of 5 and an i10-index of 4 in those areas. These metrics highlight Dr. Mishra’s influence within the academic community and his role in advancing AI and environmental modeling research.

Education

Dr. Mishra earned his PhD in Computer Science and Engineering from Chhattisgarh Swami Vivekanand Technical University in 2021, where his dissertation focused on AI-based environmental modeling. Prior to this, he completed his Master of Engineering (M.E.) in Computer Technology and Applications in 2008 with a specialization in software engineering and data analytics. His Bachelor of Engineering (B.E.) in Computer Science and Engineering was completed in 2005, where he graduated with honors. Throughout his academic journey, Dr. Mishra consistently demonstrated strong analytical skills and a passion for interdisciplinary research combining computer science with real-world applications.

Research Focus

Dr. Mishra’s research centers on leveraging artificial intelligence and machine learning to solve complex problems in environmental modeling, computer vision, and IoT systems. He has extensively worked on rainfall-runoff modeling using soft computing techniques, aiming to improve water resource management and disaster prediction. His work in computer vision includes image processing and pattern recognition, applying deep learning frameworks to automate industrial and agricultural monitoring. Additionally, he explores secure cryptographic protocols and data privacy measures for IoT devices. His innovative research integrates theoretical models with practical tools to enhance efficiency and accuracy across multiple domains.

Experience

With over 16 years of experience, Dr. Mishra has held key academic positions including Assistant Professor, Associate Professor, and Department Head. He has taught undergraduate and postgraduate courses in AI, machine learning, data structures, and software engineering at various institutions. Beyond teaching, he has been instrumental in designing curriculum frameworks, coordinating academic programs, and leading departmental research initiatives. Dr. Mishra has also organized workshops and faculty development programs, fostering a collaborative learning environment. His leadership roles have enhanced departmental visibility and student engagement, preparing future engineers and researchers for evolving technological landscapes.

Research Timeline & Activities

Dr. Mishra began his research career focusing on neural networks and cryptographic security protocols in the early 2010s. By mid-decade, his interests expanded toward AI-driven environmental modeling, particularly rainfall-runoff analysis using machine learning algorithms. In recent years, he has emphasized deep learning applications in IoT-enabled automation and smart monitoring systems. Throughout his career, Dr. Mishra has authored more than 50 research papers in peer-reviewed journals and conferences, with several articles indexed in SCI and Scopus. He has also been an active reviewer and editorial board member for multiple international journals. His research projects are often interdisciplinary, involving collaborations with environmental scientists, engineers, and data analysts.

Awards & Honors

Dr. Mishra’s dedication to teaching and research excellence has been recognized through various awards. In 2019, he received the “Excellence Teacher” award under the prestigious SRIJAN initiative by the Government of Chhattisgarh, honoring his impactful contributions to education. Earlier in his career, he was awarded the best paper at TECHNOVISION 2007 for his innovative research in cryptography. He has also been invited as a keynote speaker and session chair at multiple international conferences, further acknowledging his expertise and leadership in AI and engineering fields.

Top Noted Publication

Among Dr. Mishra’s numerous publications, “Soft Computing Techniques for Rainfall-Runoff Modeling and Analysis in River Basin,” published in Water Resources Management (Springer, 2025), stands out as a seminal work. This paper presents novel hybrid AI models that significantly enhance the accuracy of hydrological predictions, addressing critical challenges in water resource management. The publication, with an impact factor of 3.9, has garnered considerable citations and is frequently referenced by researchers in environmental science and engineering. This work exemplifies Dr. Mishra’s commitment to applying advanced computational methods to real-world problems, bridging the gap between theory and practical implementation.

  • Agrawal, M., & Mishra, P. (2012). A comparative survey on symmetric key encryption techniques. International Journal on Computer Science and Engineering, 4(5), 877.
    Citations: 349

  • Mishra, P., & Agrawal, M. (2012). A modified approach for symmetric key cryptography based on Blowfish algorithm. International Journal of Engineering and Advanced Technology (IJEAT), 1(6).
    Citations: 48

  • Mishra, P. K., & Karmakar, S. (2019). Performance of optimum neural network in rainfall–runoff modeling over a river basin. International Journal of Environmental Science and Technology, 16, 1289–1302.
    Citations: 20

  • Soni, H., & Mishra, P. K. (2013). Congestion control using predictive approach in mobile ad hoc network. International Journal of Soft Computing and Engineering (IJSCE), ISSN 2231-2307.
    Citations: 11

  • Shukla, S., & Mishra, P. (2010). A hybrid model of multimodal biometrics system using fingerprint and face as traits. IJCSES, 1(2).
    Citations: 11

Strengths for the Best Innovator Award

  1. Pioneering AI-Driven Environmental Modeling
    Dr. Mishra has demonstrated exceptional innovation in applying artificial intelligence and machine learning to environmental problems, particularly in rainfall-runoff modeling and water resource management. His hybrid AI models significantly enhance prediction accuracy, showing a clear impact on sustainable environmental solutions.

  2. Interdisciplinary Research and Collaboration
    His ability to integrate computer science with environmental science, IoT, and cryptography reflects a strong interdisciplinary approach. This fosters innovation across diverse fields, enabling practical applications that address real-world challenges and contribute to academic and industrial advancements.

  3. Patented Technologies and Practical Implementations
    Dr. Mishra’s research goes beyond theory, including the development of patented methods and tools in cryptography, AI, and IoT security. This focus on translating research into practical, usable technologies highlights his innovative mindset and entrepreneurial spirit.

  4. Leadership in Academic Program Development and Mentorship
    Serving as Program Chair and Department Head, Dr. Mishra has driven innovation in curriculum design and research initiatives, nurturing the next generation of engineers and researchers. His commitment to mentoring students and fostering creativity is a cornerstone of his innovative contributions.

  5. Recognition and Influence in the Research Community
    With over 497 citations, a solid h-index, and awards such as the Excellence Teacher Award and best paper recognitions, Dr. Mishra is a well-respected innovator. His keynote speaking engagements and editorial roles amplify his impact and leadership in advancing cutting-edge AI and machine learning research.

Research Portfolio of Dr. Anurag Yadav | Engineering | India

Research Portfolio of Dr. Anurag Yadav | Engineering | Young Researcher Award

Anurag Yadav is a highly motivated and research-oriented scholar currently pursuing his Ph.D. in Civil Engineering with a specialization in Water Resources Engineering at Motilal Nehru National Institute of Technology (MNNIT), Allahabad, India. With a strong academic foundation and deep interest in hydrological, hydraulic, and crop modeling, his research addresses critical challenges related to water resource management under climate change and uncertainty. His interdisciplinary approach combines engineering principles with geospatial technologies to propose sustainable and data-driven solutions. Anurag is also passionate about teaching and knowledge sharing, with experience in mentoring undergraduate students and contributing to capacity-building programs.

Online Profiles

Google Scholar Profile

As of 2025, Anurag Yadav has received a total of 7 citations, with an h-index of 2 as per Google Scholar. These metrics reflect his early but growing contributions to the research domains of hydrology, climate modeling, and water resources engineering. With multiple papers currently under review and accepted in reputed journals, these figures are expected to increase significantly in the coming years.

Education

Anurag’s academic path reflects consistent excellence and dedication. He earned his B.Tech in Civil Engineering from Uttar Pradesh Technical University in 2014 with a commendable 83.12%. He then pursued M.Tech in Water Resources Engineering at NIT Kurukshetra, graduating in 2016 with an outstanding 85.5% and receiving the Gold Medal for academic excellence. Currently, he is a Ph.D. scholar at MNNIT Allahabad (since 2020), where he is maintaining a strong CGPA of 9.0 while conducting interdisciplinary research on optimal cropping patterns and climate impact assessments in river basins.

Research Focus

Anurag’s core research focus lies at the intersection of water resources engineering, hydrology, agriculture, and climate science. He specializes in hydrological modeling, crop yield estimation, climate change impact analysis, and river hydraulics, using tools such as ArcSWAT, HEC-RAS, HEC-HMS, LINGO, and ArcGIS. His doctoral work aims to develop an optimal cropping pattern model under conditions of uncertain water availability and variable climate scenarios. His goal is to support sustainable water and agricultural practices through the integration of predictive modeling, remote sensing, and optimization algorithms.

Experience

Anurag brings a blend of academic, research, and industry experience to his work. He has over 3.5 years of teaching experience, including positions as Assistant Professor at IPEC Ghaziabad and Government Engineering College Jagdalpur, where he taught core civil engineering subjects and supervised student projects. His early industry exposure during his B.Tech internship at ERA Infra Engineering Ltd. (DMRC Tunnel & Precasting Yard project) helped him gain practical knowledge in infrastructure development. Additionally, his research journey includes collaborations with premier institutions, extensive training programs, and consistent engagement with national-level workshops and faculty development programs.

Research Timeline & Activities

Anurag’s research journey began during his M.Tech at NIT Kurukshetra, where he worked on sharp-crested plan form weirs. Since starting his Ph.D. in 2020, he has been engaged in multi-year, interdisciplinary research involving climate modeling, land use change analysis, hydrodynamic simulation, and flood mitigation strategies. From 2021 to 2025, he has authored and co-authored over 12 journal articles and presented 5+ research papers at international and national conferences, including events hosted by IITs, NITs, and MANIT Bhopal. He has participated in over 10 specialized training programs and FDPs, enhancing his capabilities in simulation, modeling, and research methodology.

Awards & Honors

Anurag has been consistently recognized for his academic excellence throughout his educational career. He received Merit Certificates for securing top ranks during his B.Tech studies and was honored with the Gold Medal for topping his M.Tech program at NIT Kurukshetra. He qualified the prestigious GATE exam in 2014, demonstrating his strong technical and analytical skills. His dedication to academic growth and teaching excellence has also earned him appreciation during his tenure as a faculty member. These achievements reflect his continuous pursuit of knowledge and high standards in both research and education.

Top Noted Publication

Among his many contributions, one of Anurag’s most impactful publications is titled “The Role of Channel Modification in Flood Mitigation: A Study Using HEC-RAS” published in Water Resources Management (2025). This paper highlights the effectiveness of channel redesign and structural interventions in mitigating flood risks in riverine areas. Using hydraulic simulations, the study provides actionable insights for planners and engineers involved in flood management and river training works. The paper is notable for its practical relevance and its integration of field data with advanced modeling techniques, making it a valuable reference in the field of water resources engineering.

  • Yadav, A., & Singh, R.M. (2024). Spatio-temporal Estimation of Evapotranspiration and Runoff in Sub-Watersheds of a Basin Using ArcSWAT. National Academy Science Letters, 1–5.
    Citations: 3

  • Yadav, A., & Singh, R.M. (2025). Spatio-temporal Analysis and Prediction of Land Use and Land Cover in Jagdalpur Sub-Division of Bastar District in State of Chhattisgarh, India from 2012 to 2037. Journal of the Institution of Engineers (India): Series A, 106(1), 45–57.
    Citations: 2

  • Yadav, A., Singh, R.M., Pandey, M.K., Maurya, S.P., & Singh, S.K. (2024). Hydrodynamic Modelling of River Training Works for Protection of Group of Villages on the Left Bank of Ramganga River: A Case Study. Natural Hazards, 120(15), 14889–14904.
    Citations: 2

  • Yadav, A., & Singh, R.M. (2025). Presence and Water Availability of Jagdalpur Urban Area in Indravati River Basin Analyzed by LULC Densities and ArcSWAT Model. Urban Water Journal, 1–15.
    Citations: 0

  • Yadav, A., & Singh, R.M. (2025). Assessing Climate Models to Forecast Future Climate and Agricultural Water Demand in the Indravati River Basin. Modeling Earth Systems and Environment, 11(3), 160.
    Citations: 0

  • Yadav, A., & Singh, R.M. (2025). The Role of Channel Modification in Flood Mitigation: A Study Using HEC-RAS. Water Resources Management, 39(6), 2841–2855.
    Citations: 0

  • Yadav, A., & Singh, R.M. (2024). Inflow Assessment Using Hydrologic and GIS Techniques of Macpherson Lake Watershed in Prayagraj, India. National Academy Science Letters, 1–5.
    Citations: 0

  • Yadav, A. (2017). Flow Characteristics of Triangular Plan Form Weir. International Journal of Water Resources Engineering, 3(2), 17–22.
    Citations: 0

Duggirala Mitra, Engineering, Best Innovator Award

Dr. Duggirala Mitra: Deputy Manager at JSW Steel ltd, India

Dr. Duggirala Mitra

  • Current Role/Designation: Deputy Manager

  • Organization: JSW Steel Ltd

  • Country: India

  • Subject Track: Engineering

  • Key Areas of Expertise: Mineral Process Engineering, Beneficiation of Lean Grade Ores

  • Award Categories: Best Innovator Award

Dr. Duggirala Vijaya Mitra is an accomplished mineral process engineer with a strong background in iron ore and coal beneficiation, tailings utilization, and sustainable mineral technologies. He holds a Ph.D. in Mineral Process Engineering from Andhra University College of Engineering and currently works as Deputy Manager in the Research and Development Department at JSW Steel Ltd. Over the years, Dr. Mitra has established himself as a dedicated researcher with a passion for industrial innovation, particularly in upgrading low-grade ores and repurposing tailings for commercial use. His work bridges the gap between academic research and practical application, with a proven record of delivering impactful projects, publishing scientific articles, and presenting at reputed conferences.

Online Profiles

Google Scholar Profile

Education

Dr. Mitra earned his Ph.D. in Mineral Process Engineering from Andhra University College of Engineering on 14th February 2023. His doctoral research was focused on optimizing beneficiation techniques for iron ore and coal, exploring the integration of advanced separation technologies such as gravity and magnetic separation following fine grinding. During his academic career, he developed a deep understanding of complex mineral systems, process engineering fundamentals, and analytical methods used in metallurgical research. This strong educational foundation equipped him to transition smoothly into industrial R&D, where he now applies these principles to large-scale mineral processing challenges.

Research Focus

Dr. Mitra’s primary research interests lie in the beneficiation and sustainable utilization of iron ore and coal tailings. He focuses on improving the grade, yield, and recovery of valuable minerals using methods such as grinding, gravity separation, flotation, and magnetic separation. A key area of his work involves developing eco-friendly processing techniques that minimize environmental impact while maximizing resource recovery. He is also actively engaged in repurposing mineral tailings for industrial applications such as cement additives, construction materials, and fillers, thereby aligning his research with circular economy principles. His work aims to make mineral processing more efficient, sustainable, and economically viable.

Experience

Currently working as Deputy Manager at JSW Steel Ltd, Dr. Mitra has over 3 years of experience in industrial research and development. His role involves leading mineral beneficiation projects, designing process flowsheets, conducting lab and pilot-scale trials, and generating techno-commercial solutions for raw material optimization. Prior to this, he held positions such as Senior Research Fellow, Junior Research Fellow, and Project Assistant, contributing to both academic and industrial research in mineral engineering. He has successfully handled multi-disciplinary projects that involve team coordination, experimental design, process modeling, and data interpretation. His career has been marked by a commitment to translating theoretical research into practical, scalable industrial outcomes.

Research Timeline & Activities

Between 2018 and 2025, Dr. Mitra has actively engaged in a wide range of research activities, starting from coal flotation and hydrotrope applications during his early academic years to advanced iron ore beneficiation during his doctoral and industrial tenure. His timeline includes the development of process routes for enhancing Fe recovery, use of starch-based depressants in reverse flotation, and optimization of grinding media for pellet feed preparation. He has participated in more than 10 national and international conferences, delivering presentations on sustainable processing and novel separation techniques. His recent research includes studies on thickener performance, flocculent efficiency, and reuse of tailings in value-added products, showing a clear progression toward sustainable mineral resource management.

Awards & Honors

Dr. Mitra’s career progression and research visibility demonstrate a high level of recognition in his field. His promotion to Deputy Manager in a top-tier organization like JSW Steel Ltd and repeated invitations to present at international conferences in the UK and India highlight his standing as a trusted expert in mineral processing. He has received appreciation from both academic mentors and industrial leaders for his contributions to process improvement, cost reduction, and sustainability. His research has also been featured in reputed journals and proceedings, further cementing his credibility in the mineral engineering domain.

Top Noted Publication

Among his notable contributions, the paper titled “Sustainable Iron Ore Tailings Management through Reprocessing”, published in the Transactions of the Indian Institute of Metals on July 19, 2025, stands out as a key achievement. This publication outlines a strategic approach to managing and reprocessing iron ore tailings using a combination of gravity and magnetic separation methods. The study demonstrated significant improvements in Fe recovery and grade enhancement, with practical implications for the pellet plant feed preparation. This work not only addressed technical challenges but also emphasized environmental responsibility, making it a reference point for both researchers and practitioners in mineral processing.

Enhanced Recovery by Hydrotropes in Oxidized Coal Flotation
Duggirala Vijaya Mitra, Ch Asha Immanuel Raju, T Gouri Charan
International Journal of Renewable Energy and its Commercialization, Volume 7, Issue 1, Pages 19–23, Published on 20th June 2021.

This study explores the role of hydrotropes, specifically sodium benzoate, as activators in the flotation of oxidized coal. Traditional flotation techniques often struggle with low-grade fines; however, this research demonstrates that the use of hydrotropes significantly enhances the recovery and quality of the concentrate. The recovery rate increased from 12.8% under standard plant conditions to 31% with the addition of sodium benzoate, while the ash content in the concentrate was reduced from 22.21% to 18.60%. Hydrotropes, which are amphiphilic molecules that improve solubility without forming micelles, were found to aid in the effective dispersion and attachment of particles during flotation. The results highlight the potential of hydrotropes to improve both yield and efficiency in coal beneficiation processes.

Yanjie Wu, Chemistry, Best Innovator Award

Dr. Yanjie Wu: Special Research Assistant at Changchun Institute of Applied Chemistry, China

Title/Designation: Dr.
Name: Yanjie Wu
Current Role/Designation: Special Research Assistant
Organization/Institution Details: Changchun Institute of Applied Chemistry, Chinese Academy of Sciences
Country: China
Subject Track: Chemistry
Key Areas of Expertise: Research on Perovskite Solar Cells
Award Categories: Best Innovator Award

Dr. Wu Yanjie is a dedicated researcher specializing in advanced photovoltaic materials and device engineering, currently serving as a postdoctoral fellow and special research assistant at the Changchun Institute of Applied Chemistry, Chinese Academy of Sciences. With a strong academic foundation in physical electronics and optics, she has been engaged in solar cell research since 2015. Her work primarily focuses on the development of high-efficiency, stable, and scalable perovskite solar cells (PSCs), with research contributions spanning material innovation, interface engineering, and large-area device fabrication. Dr. Wu has published 14 SCI-indexed papers as the first or co-corresponding author in leading journals such as Advanced Energy Materials and Nano Energy, and has been the principal investigator of multiple national and provincial-level research projects. Her long-term vision is to contribute to the commercialization of next-generation solar technologies.

Online Profiles

Scopus Profile

  • Total Documents: 71

  • Total Citations: 2,321

  • Citing Documents: 1,867

  • h-index: 29

Dr. Wu Yanjie has established a significant presence in the field of perovskite solar cells and optoelectronic materials, with a robust citation record and consistent publication in high-impact journals. Her h-index of 29 reflects both the quantity and quality of her scientific output. Her publications are frequently cited by researchers across disciplines, indicating broad relevance and influence within the scientific community.

Education

Dr. Wu received her Ph.D. in Physical Electronics in 2021 from the School of Electronic Science and Engineering at Jilin University, under the supervision of Professor Song Hongwei, a National Outstanding Young Scientist and leading talent in China’s Thousand Talent Program. Prior to her doctoral studies, she obtained both her Master’s degree in Optics (2018) and Bachelor’s degree in Physics (2015) from Jilin Normal University. Throughout her academic training, Dr. Wu developed interdisciplinary expertise at the interface of physics, electronics, and materials science, laying the groundwork for her research in high-performance solar cell technology.

Research Focus

Dr. Wu’s research focuses on designing and fabricating next-generation perovskite solar cells with a specific emphasis on improving power conversion efficiency, operational stability, and spectral range. Her work integrates ultrafast spectroscopy to probe carrier dynamics, advanced interface engineering to enhance charge transport, and spectral modification techniques to extend device response into the near-infrared. She employs down-conversion rare-earth-doped quantum dots, natural organic molecules, and thermally activated delayed fluorescence (TADF) polymers as strategic materials to overcome conventional limitations in PSCs. Additionally, her research emphasizes scalable fabrication techniques, including doctor blade coating and roll-to-roll printing, to enable flexible and large-area devices suitable for industrial deployment.

Experience

Dr. Wu has accumulated over 9 years of hands-on research experience in the field of photovoltaics and materials physics. Since June 2022, she has worked as a special research assistant and postdoctoral fellow at the Changchun Institute of Applied Chemistry under Prof. Qin Chuanjiang. From 2018 to 2021, she completed her Ph.D. studies at Jilin University, where she carried out independent research and contributed significantly to national key projects. She also played an active role in multidisciplinary collaborations during her time as a graduate student and received multiple awards for academic excellence. In each position, Dr. Wu has consistently demonstrated the ability to lead projects, publish high-impact research, and innovate in both fundamental and applied aspects of solar cell development.

Research Timeline & Activities

Dr. Wu began her journey in solar cell research in 2015 during her master’s studies, initially focusing on optics and material properties. From 2018 to 2021, during her Ph.D. program at Jilin University, she expanded her expertise into carrier separation dynamics, interface physics, and hybrid organic-inorganic materials for PSCs. Her doctoral work introduced multiple material modification strategies, including natural molecule integration and metal doping, to enhance cell performance. Since joining the Changchun Institute of Applied Chemistry in 2022, she has led independent research on rare-earth-doped perovskite quantum dots and TADF conjugated polymers for tandem and flexible solar cells. Throughout her research timeline, she has participated in and led multiple national-level and provincial-level funded projects, actively contributing to cutting-edge advancements in photovoltaics.

Awards & Honors

Dr. Wu has received numerous accolades in recognition of her academic excellence and research contributions. Notably, she was named an “E-Class Talent” of Jilin Province, reflecting her recognized status as an emerging leader in scientific research. She was awarded the Outstanding Graduate of Jilin University in 2021 and received the First Prize for Academic Achievement Scholarship in the same year. Her Master’s thesis was recognized as the Outstanding Thesis of Jilin Province in 2019, and she has received multiple national and institutional scholarships, including the National Graduate Scholarship in 2017. These honors attest to her consistent performance, leadership potential, and contributions to the advancement of scientific research.

Recent Notable Publications (2024–2025)

Among her many impactful publications, one of the most distinguished is: Wu, Y.J., et al. “Toward Broad Spectral Response Inverted Perovskite Solar Cells: Insulating Quantum-Cutting Perovskite Nanophosphors and Multifunctional Ternary Organic Bulk-Heterojunction,” published in Advanced Energy Materials (2022, 12, 2200005; Impact Factor: 27.8). In this work, Dr. Wu proposed a novel hybrid architecture combining down-conversion nanophosphors and multifunctional organic layers to significantly broaden spectral response and boost solar cell efficiency. This research has attracted significant attention for its originality and technical depth, positioning her as a thought leader in the field of perovskite photovoltaics.

Improving Buried Interface Contact by Diphenylphosphine Oxide Substituent for Highly Efficient Inverted Perovskite Solar Cells
Published in: Nano Energy, 2025
Citation Count: 0 (new publication)
Summary: Introduces a novel interface engineering strategy using diphenylphosphine oxide functional groups to enhance buried interface contact, significantly improving charge extraction in inverted PSCs.

Multifunctional BODIPY-Structured n-Type Conjugated Polymer for Simultaneous Interface Energetic Modification and Defect Passivation to Boost Efficiency and Stability of Inverted Perovskite Solar Cells
Published in: Journal of Physical Chemistry Letters, 2025
Citation Count: 0 (new publication)
Summary: Develops a BODIPY-based n-type polymer with dual functionality for both interface energy alignment and defect suppression, enabling high-performance PSCs with long-term operational stability.

A Simplified Device Achieves Color-Temperature Tunable Organic Light-Emitting Diodes
Published in: IEEE Electron Device Letters, 2025
Citation Count: 1
Summary: Demonstrates a simplified OLED structure capable of tunable color temperature, providing new pathways for human-centric lighting applications.

Gas Molecule Assisted All-Inorganic Dual-Interface Passivation Strategy for High-Performance Perovskite Solar Cells
Published in: Advanced Science, 2024 (Open Access)
Citation Count: 11
Summary: Proposes an innovative gas-assisted dual-interface passivation method to boost performance and environmental stability of all-inorganic PSCs.

Perovskite Solar Cells with Extremely High 24.63% Efficiency through Design of Double Electron Transport Layers and Double Luminescent Converter Layers
Published in: Advanced Functional Materials, 2024
Citation Count: 18
Summary: Achieves a record efficiency of 24.63% in inverted PSCs by engineering multilayer ETLs and luminescent converters, setting a new benchmark in device design.

Improved Hole-Selective Contact Enables Highly Efficient and Stable FAPbBr₃ Perovskite Solar Cells and Semitransparent Modules
Published in: Advanced Materials, 2024
Citation Count: 16
Summary: Optimizes hole-selective contact layers to enhance the performance and stability of FAPbBr₃-based semitransparent PSC modules for building-integrated photovoltaics.

Anand G, Engineering, Best Innovator Award

Dr. Anand G: Associate Professor & Head at Achariya College of Engineering Technology, India

Title/Designation: Dr.
Name: Anand G
Current Role/Designation: Associate Professor & Head
Organization/Institution: Achariya College of Engineering Technology
Country: India
Subject Track: Engineering
Key Areas of Expertise: Composite Materials, Advanced Welding Process
Award Categories: Best Innovator Award

Dr. G. Anand is an accomplished Associate Professor and Head of the Mechanical Engineering Department at Achariya College of Engineering Technology, Puducherry. With a Ph.D. in Mechanical Engineering and over a decade of combined teaching and research experience, he is recognized for his expertise in composite materials, advanced manufacturing techniques, and intelligent manufacturing systems. Dr. Anand actively contributes to academia by mentoring students, leading research projects, and managing training and placement activities. His dedication to fostering innovation and academic excellence has earned him a prominent position within the engineering education community.

Online Profiles

Google Scholar Profile

Dr. G. Anand has a total of 828 citations on Google Scholar and 802 citations on ResearchGate, reflecting the impact of his research work in the field of mechanical engineering. He holds an h-index of 16 and an i10-index of 20 on both platforms, indicating consistent contributions to high-quality publications and scholarly influence.

Education

Dr. Anand earned his Ph.D. in Mechanical Engineering from Pondicherry Engineering College in 2018, where his research focused on the synthesis, characterization, and testing of vinyl ester composites reinforced with glass fiber coated with Ni-P and Al₂O₃ nanowires. He also completed a Master’s degree in Product Design and Manufacturing with an outstanding CGPA of 8.98/10, and a Bachelor’s degree in Mechanical Engineering. Complementing his formal education, he completed an AICTE QIP certification program on IoT and Manufacturing at IIT BHU, enhancing his expertise in emerging manufacturing technologies and digital integration.

Research Focus

Dr. Anand’s research is primarily centered on developing advanced composite materials and innovative manufacturing processes aimed at improving performance and sustainability. His interests include drug-eluting orthopedic composite implants, electroless coating processes for corrosion resistance, additive manufacturing, friction stir processing, and machining of composites using both conventional and non-conventional methods. Additionally, he integrates artificial intelligence techniques like fuzzy logic and artificial neural networks to optimize manufacturing processes, contributing to intelligent manufacturing systems and Industry 4.0 initiatives.

Experience

Over the last 10 years, Dr. Anand has progressively advanced through academic roles, starting as a Guest Faculty and Research Assistant at Pondicherry Engineering College, moving on to Assistant Professor roles, and currently serving as Associate Professor and Head of Department at Achariya College of Engineering Technology. His teaching portfolio spans a broad spectrum of mechanical engineering subjects including manufacturing technology, machining processes, composite materials, and engineering metallurgy. Dr. Anand has also played key roles in curriculum design, research supervision, and organizing workshops to elevate the educational experience and research output of his institutions.

Research Timeline & Activities

Since completing his doctorate in 2018, Dr. Anand has been prolific in research output, publishing papers in reputed peer-reviewed international journals with notable impact factors. He has been instrumental in organizing multiple government-funded faculty development programs, workshops, and training sessions that focus on emerging trends such as AI in manufacturing, renewable energy integration, and advanced medical manufacturing techniques. His ongoing commitment to professional development is evidenced by his pursuit of certification programs and active involvement in interdisciplinary collaborative research projects.

Awards & Honors

Dr. Anand’s work has been recognized and financially supported by several prestigious government agencies including AICTE and MSME Technology Center. His leadership in organizing faculty development programs and workshops on cutting-edge research themes demonstrates his commitment to enhancing academic quality and research integrity. These recognitions highlight his reputation as an educator and researcher dedicated to advancing engineering education and fostering innovation in manufacturing.

Top Noted Publication

Among his numerous impactful publications, the paper titled “Mechanical strength and swelling resistance enhancement in Ethylene-Propylene-Diene Monomer/Styrene-Butadiene rubber nanocomposites using 1-Octadecanol-Modified carbon nanotubes,” published in the Journal of Polymer Research (Springer, 2025; Impact Factor 2.9), stands out. This work addresses critical improvements in nanocomposite materials, offering insights into enhanced mechanical performance and durability, which have broad implications for industrial applications in automotive, aerospace, and biomedical sectors.

  • Investigation of drilling parameters on hybrid polymer composites using grey relational analysis, regression, fuzzy logic, and ANN models
    G Anand, N Alagumurthi, R Elansezhian, K Palanikumar
    Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2018
    This highly cited work (101 citations) explores the optimization of drilling parameters in hybrid polymer composites using advanced statistical and AI models, improving manufacturing efficiency and composite integrity.

  • Effect of nanoclay/nanosilica on the mechanical properties, abrasion and swelling resistance of EPDM/SBR composites
    S Vishvanathperumal, G Anand
    Silicon, 2020
    Cited 89 times, this study investigates how nanoclay and nanosilica fillers enhance the mechanical durability and resistance properties of rubber composites, relevant for automotive and industrial applications.

  • Effect of nanosilica on the mechanical properties, compression set, morphology, abrasion and swelling resistance of sulphur cured EPDM/SBR composites
    S Vishvanathperumal, G Anand
    Silicon, 2022
    This publication (76 citations) expands on the role of nanosilica in improving the structural and functional behavior of rubber blends, a key contribution in polymer nanocomposite research.

  • Effect of Nanosilica and Crosslinking System on the Mechanical Properties and Swelling Resistance of EPDM/SBR Nanocomposites with and without TESPT
    S Vishvanathperumal, G Anand
    Silicon, 2021
    With 73 citations, this paper studies the interaction of nanosilica and crosslinking agents on nanocomposite performance, providing insights into composite formulation techniques.

  • Properties of SBR/NR Blend: The Effects of Carbon Black/Silica (CB/SiO2) Hybrid Filler and Silane Coupling Agent
    G Anand, S Vishvanathperumal
    Silicon, 2022
    Cited 71 times, this research focuses on hybrid fillers in rubber blends and their effect on mechanical and swelling characteristics, aiding the design of durable elastomer materials.