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| Ezhilselvi Varathan | |
|---|---|
| Affiliation | CSIR – National Aerospace Laboratories (NAL), Bengaluru |
| Country | India |
| Scopus Author ID | 56380581600 |
| Research Area | Chemistry, Electrochemistry, Corrosion Science, Surface Engineering |
| Citations | 362 |
| h-index | 9 |
| Documents | 29 |
| Subject Area | Chemistry |
| Event | Indian Scientist Awards |
Ezhilselvi Varathan
CSIR – National Aerospace Laboratories (NAL), Bengaluru, India
Ezhilselvi Varathan is a distinguished scientist and researcher in the field of Chemistry with specialization in electrochemistry, corrosion science, surface engineering, and materials characterization. Her scientific contributions have significantly advanced the understanding of corrosion mechanisms, electrochemical processes, and protective technologies for engineering and aerospace materials.
Ezhilselvi Varathan is an accomplished researcher in chemistry whose work focuses on electrochemistry, corrosion science, materials engineering, and surface protection technologies. Her scientific investigations have enhanced understanding of material degradation mechanisms and the development of effective corrosion mitigation strategies.
Chemistry, Electrochemistry, Corrosion Science, Surface Engineering, Materials Science, Aerospace Materials, Electrochemical Analysis, Corrosion Protection, Coating Technologies.
Chemistry is a fundamental scientific discipline that drives innovation across numerous technological sectors. Electrochemistry and corrosion science are particularly important in improving the durability, efficiency, and reliability of engineering systems and advanced materials.
Ezhilselvi Varathan serves as a Scientist at CSIR–National Aerospace Laboratories, Bengaluru. Her expertise encompasses electrochemistry, corrosion science, surface engineering, materials characterization, and engineering applications of chemistry.
Her research activities focus on corrosion monitoring, electrochemical analysis, materials degradation mechanisms, protective surface coatings, and engineering material performance. These studies have practical applications in aerospace, manufacturing, and industrial sectors.
Ezhilselvi Varathan has achieved significant scientific visibility through her research contributions, receiving more than 573 citations and maintaining a strong academic presence in chemistry and materials science research.
Ezhilselvi Varathan demonstrates exceptional dedication to scientific research through her impactful contributions to chemistry, electrochemistry, corrosion science, and materials engineering. Her sustained research excellence and technological contributions strongly support her selection for the Women Researcher Award.
Ezhilselvi Varathan has established herself as a respected researcher in chemistry through her innovative work in electrochemistry, corrosion science, and materials engineering. Her scientific achievements, research impact, and commitment to advancing technological knowledge make her a deserving recipient of the Women Researcher Award.
| Shailee Tiwari | |
|---|---|
| Affiliation | Shri Ramkrishna Paramhans College of Pharmacy, Maharashtra |
| Country | India |
| Scopus Author ID | 57190732577 |
| Citations | 840 |
| Documents | 40 |
| h-index | 18 |
| Research Area | Pharmacy, Medicinal Chemistry, Drug Discovery, Anticancer Research |
| Event | Indian Scientist Awards |
Shailee Tiwari
Shri Ramkrishna Paramhans College of Pharmacy, Maharashtra, India
Shailee Tiwari is a distinguished pharmaceutical researcher, educator, and medicinal chemist with expertise in anticancer drug discovery, medicinal chemistry, pharmaceutical sciences, and green synthesis methodologies. She has made significant contributions to pharmaceutical research through high-impact publications, patents, books, and innovative research projects.
Her research focuses on the design, synthesis, biological evaluation, molecular docking, and development of novel therapeutic agents targeting cancer and other diseases. Her work has gained recognition nationally and internationally through publications in reputed journals and conference presentations.
Shailee V. Tiwari has established herself as a leading researcher in pharmaceutical sciences with extensive contributions in medicinal chemistry, green synthesis, anticancer drug development, and molecular modeling. Her research has generated significant scientific outcomes through publications, patents, books, and collaborative research activities.
Pharmacy, Medicinal Chemistry, Anticancer Agents, Drug Discovery, Molecular Docking, Pharmaceutical Sciences, Green Chemistry, Drug Design, EGFR Inhibitors.
Pharmaceutical research plays a critical role in discovering innovative therapeutic solutions for complex diseases. Medicinal chemistry and drug discovery have become essential areas for developing effective and targeted treatment approaches.
Tiwari earned her Ph.D. in Pharmacy from Babasaheb Ambedkar Marathwada University, Aurangabad. She also holds an M.Tech in Drugs and Pharmaceutics and a B.Pharm degree with first-class academic distinction.
Her research focuses on medicinal chemistry, synthesis of bioactive heterocyclic compounds, anticancer drug discovery, molecular docking studies, ADMET prediction, pharmaceutical formulations, and green chemistry approaches.
Tiwari’s research has achieved significant scientific visibility with 840 citations, 40 indexed publications, and an h-index of 18. Her studies have contributed to advances in medicinal chemistry, cancer therapeutics, and pharmaceutical innovation.
Shailee V. Tiwari demonstrates outstanding contributions to pharmaceutical sciences through impactful research publications, patents, books, innovative drug discovery projects, and academic leadership. Her achievements strongly support her suitability for the Women Researcher Award.
Shailee V. Tiwari is a highly accomplished researcher whose contributions to medicinal chemistry, pharmaceutical sciences, and anticancer drug discovery have advanced scientific knowledge and innovation. Her research excellence, academic achievements, and commitment to healthcare advancement make her a deserving recipient of the Women Researcher Award.
| Punam Rattan | |
|---|---|
| Affiliation | Manav Rachna University, Haryana |
| Country | India |
| Department | Computer Science & Technology |
| Subject Area | Engineering |
| Google Scholar | sqClLDAAAAAJ |
| ORCID | 0000-0002-1965-0703 |
| Scopus ID | 57224618501 |
| Citations | 232 |
| Documents | 42 |
| h-index | 8 |
| Specialization | Data Science, Machine Learning, Artificial Intelligence |
| Event | Indian Scientist Awards |
Punam Rattan is an Indian academician, researcher, and engineering professional specializing in Data Science, Machine Learning, and Artificial Intelligence. She is currently serving as Professor in the Department of Computer Science and Technology, School of Engineering, Manav Rachna University, Haryana, India.
Her research contributions focus on intelligent computing systems, machine learning applications, data analytics, artificial intelligence, and emerging computational technologies. Through scientific publications, patents, academic mentorship, and interdisciplinary collaborations, she has contributed significantly to engineering education and advanced computing research.
Punam Rattan is actively involved in engineering and computational research with significant contributions in data science, machine learning, artificial intelligence, and intelligent data analytics. Her research integrates computational intelligence, predictive modeling, algorithm development, and data-driven solutions for solving real-world engineering and technological challenges.
Data Science, Machine Learning, Artificial Intelligence, Deep Learning, Intelligent Systems, Predictive Analytics, Computational Intelligence, Engineering Research, Data Analytics, Smart Computing, Emerging Technologies.
Modern engineering and computational sciences are transforming industries through intelligent systems, automation, predictive technologies, and data-driven decision-making. Data science and machine learning have become essential tools for innovation across healthcare, education, business analytics, cybersecurity, and industrial automation.
Punam Rattan currently serves as Professor in the Department of Computer Science and Technology at Manav Rachna University, Haryana. She has extensive academic and research experience in engineering education, intelligent computing, and advanced computational technologies.
Punam Rattan’s research work primarily focuses on machine learning models, data analytics systems, intelligent algorithms, and artificial intelligence-based applications. Her work explores computational approaches for predictive analysis, classification systems, intelligent automation, and decision-support technologies.
Punam Rattan’s research contributions have strengthened the development of intelligent computing systems, machine learning methodologies, and data-driven engineering solutions. Her work supports technological innovation and computational advancements across multiple engineering domains.
Punam Rattan’s academic and research profile strongly aligns with the objectives of the Research Excellence Award under the Indian Scientist Awards framework. Her contributions in data science, machine learning, artificial intelligence, and engineering innovation demonstrate impactful scientific and technological advancement.
Punam Rattan is an accomplished engineering academician and researcher whose scholarly contributions significantly advance the fields of data science, machine learning, and artificial intelligence. Through research publications, patents, books, academic leadership, and interdisciplinary innovation, she continues to contribute meaningfully toward modern engineering research and intelligent computational technologies.
| Suryakant Verma | |
|---|---|
| Affiliation | School of Pharmacy, Bharat Institute of Technology, Meerut |
| Country | India |
| Google Scholar | pAn9WXoAAAAJ |
| ORCID | 0000-0001-5179-0071 |
| Scopus ID | 59002061700 |
| Citations | 13 |
| h-index | 2 |
| Documents | 6 |
| Specialization | Pharmaceutics, NDDS, Microspheres, Polyherbal Formulations, Drug Delivery Systems |
| Event | Indian Scientist Awards |
Suryakant Verma
School of Pharmacy, Bharat Institute of Technology, Meerut, India
Suryakant Verma is an Indian pharmaceutical scientist, academician, and researcher specializing in Pharmaceutics and Novel Drug Delivery Systems (NDDS). He is currently serving as Professor at the School of Pharmacy, Bharat Institute of Technology, Meerut, Uttar Pradesh, India.
His research focuses on advanced drug delivery systems, microspheres, ethosomal formulations, gastroretentive systems, herbal drug formulations, nanotechnology-based pharmaceutical systems, and controlled release dosage forms.
Suryakant Verma is actively involved in pharmaceutical research with major contributions in novel drug delivery systems, microspheres, gastroretentive formulations, herbal drug delivery systems, transdermal formulations, nanotechnology-based systems, and controlled drug release technologies. His research integrates formulation development, characterization, optimization, and pharmacological evaluation of advanced pharmaceutical dosage forms.
Pharmaceutics, Novel Drug Delivery Systems, Microspheres, Polyherbal Formulation, Gastroretentive Drug Delivery, Ethosomes, Nanotechnology, Controlled Release Systems, Ocular Drug Delivery, Transdermal Drug Delivery, Pharmaceutical Research, Herbal Therapeutics.
Pharmaceutical sciences play a crucial role in the advancement of healthcare through innovative drug delivery systems, improved therapeutic efficacy, and patient-centered formulations. Modern pharmaceutics focuses on enhancing bioavailability, targeted delivery, sustained release systems, and nanotechnology-based therapeutics.
Suryakant Verma currently serves as Professor at the School of Pharmacy, Bharat Institute of Technology, Meerut. He completed his Ph.D. in Pharmaceutics from IIMT University, Meerut in 2025. He also holds M.Pharm. in Pharmaceutics and LLB qualifications, demonstrating multidisciplinary academic expertise.
Suryakant Verma’s research work primarily focuses on the formulation and evaluation of advanced drug delivery systems including microspheres, ethosomes, microemulsions, nanogels, floating tablets, transferosomes, and transdermal systems. His work extensively investigates formulation optimization, drug release kinetics, stability studies, and therapeutic effectiveness.
Suryakant Verma’s research contributions have strengthened the development of innovative pharmaceutical dosage forms and advanced therapeutic delivery systems. His work in microspheres, herbal formulations, gastroretentive systems, and nanotechnology-based delivery approaches demonstrates significant relevance in modern pharmaceutics research.
Suryakant Verma’s academic and research profile strongly aligns with the objectives of the Research Excellence Award under the Indian Scientist Awards framework. His contributions in pharmaceutics, novel drug delivery systems, herbal therapeutics, and pharmaceutical innovation demonstrate impactful scientific advancement.
Suryakant Verma is an accomplished pharmaceutical scientist, educator, and researcher whose contributions in pharmaceutics and novel drug delivery systems significantly support the advancement of pharmaceutical sciences. Through innovative research, patents, publications, student mentorship, and academic leadership, he continues to contribute meaningfully toward modern healthcare and pharmaceutical technology development.
| Antra Chaudhary | |
|---|---|
| Affiliation | Jamia Hamdard University, New Delhi |
| Country | India |
| Google Scholar | n1DXv40AAAAJ |
| ORCID ID | 0009-0006-9003-5566 |
| Citations | 202 |
| Research Area | Osteoporosis, Bone Pharmacology, Oxidative Stress |
| h-index | 7 |
| Documents | 14 |
| Event | Indian Scientist Awards |
Antra Chaudhary
Jamia Hamdard University, New Delhi
Antra Chaudhary is a Ph.D. Scholar in Pharmacology at Jamia Hamdard University, New Delhi. Her research focuses on osteoporosis, bone pharmacology, oxidative stress, and the therapeutic role of natural compounds in bone health disorders.
She has contributed to pharmacological and neurological research through publications in reputed journals, conference presentations, and interdisciplinary scientific collaborations. Her work mainly focuses on translational research and innovative therapeutic strategies.
Antra Chaudhary is actively engaged in pharmacological research focusing on osteoporosis, oxidative stress, neuroprotection, and natural therapeutic compounds. Her work explores innovative approaches for preventing bone damage and improving bone health outcomes.
She has published research and review papers in reputed international journals and contributed to studies related to stroke, neuroinflammation, mitochondrial dysfunction, and pharmacological interventions.
Osteoporosis, Bone Pharmacology, Oxidative Stress, Neuroprotection, Natural Compounds, Pharmacology, Stem Cell Therapy, Inflammatory Diseases, Translational Research.
Pharmacological research plays an important role in developing innovative therapeutic solutions for chronic diseases and bone disorders. Research on osteoporosis and oxidative stress has become increasingly important for improving healthcare outcomes and preventive medicine.
Antra Chaudhary completed her MS (Pharm.) in Pharmacology and Toxicology from NIPER Guwahati with 8.20 CGPA. She completed her B.Pharmacy from KIET School of Pharmacy, Ghaziabad with 87%.
She qualified GPAT, NIPER-JEE, and UPSEE examinations with notable ranks and is currently pursuing her Ph.D. at Jamia Hamdard University under the guidance of Prof. Divya Vohora.
Her research work focuses on glucocorticoid-induced bone damage, postmenopausal osteoporosis, oxidative stress, and natural compounds with therapeutic potential.
She has also contributed to studies involving neuroprotection, inflammatory diseases, stem cell therapy, and molecular pharmacology through collaborative interdisciplinary research.
Antra Chaudhary’s research contributes to the advancement of bone pharmacology and neuroprotective therapeutics. Her publications in reputed journals demonstrate strong scientific involvement in translational and interdisciplinary pharmacological research.
Antra Chaudhary demonstrates strong potential as an emerging researcher in pharmacology and osteoporosis research. Her scientific publications, fellowship achievements, conference participation, and translational research contributions support her suitability for the Young Researcher Award.
Antra Chaudhary is a promising young researcher contributing to osteoporosis research, bone pharmacology, and neuroprotective therapeutics. Through scientific publications, interdisciplinary research, and advanced laboratory skills, she continues to contribute to modern pharmacological sciences and healthcare innovation.
| Amrita Poonia | |
|---|---|
| Affiliation | Banaras Hindu University, Varanasi |
| Country | India |
| Google Scholar | tBkbgeQAAAAJ |
| Citations | 1913 |
| h-index | 21 |
| Publications | 91 Research Publications |
| Publications | 129 |
| Specialization | Food Technology, Dairy Science, Functional Foods, Sustainable Food Processing |
| Event | Indian Scientist Awards |
Amrita Poonia
Banaras Hindu University, Varanasi, India
Amrita Poonia is an Indian academician, food scientist, and researcher specializing in Dairy Science, Functional Foods, Nanotechnology, and Sustainable Food Processing. She is currently serving as Associate Professor in the Department of Dairy Science and Food Technology at the Institute of Agricultural Sciences, Banaras Hindu University (BHU), Varanasi, Uttar Pradesh, India.
Amrita Poonia has made significant contributions in the field of Dairy Science and Food Technology through innovative research on functional dairy foods, food waste valorization, nanotechnology, and sustainable food processing systems. Her interdisciplinary research integrates nutrition, food engineering, sustainable packaging, and food biotechnology to address modern food security and public health challenges.
Functional Dairy Foods, Dairy Technology, Food Waste Valorization, Nanotechnology, Edible Food Packaging, Sustainable Food Processing, Functional Foods, Dairy Science, Food Biotechnology, Food Safety.
Food science and dairy technology play an essential role in improving nutritional quality, food safety, sustainability, and global health outcomes. Modern research in functional foods, food packaging, and waste valorization has become increasingly important for addressing environmental concerns and enhancing food system efficiency.
Amrita Poonia is currently working as Associate Professor in the Department of Dairy Science and Food Technology, Institute of Agricultural Sciences, Banaras Hindu University, Varanasi. Her academic and research expertise includes functional dairy foods, edible food packaging technologies, nanotechnology applications in food systems, and food waste valorization strategies.
Associate Professor, Department of Dairy Science and Food Technology, Banaras Hindu University, Varanasi.
Amrita Poonia’s major research contributions involve the development of functional dairy foods, sustainable utilization of food waste, microencapsulation technologies, and innovative edible food packaging systems. Her research emphasizes improving nutritional quality and sustainability in food processing industries.
Project on “Identification of Food borne pathogen (Listeria monocytogenes) in Shrikhand Using PCR” funded under BHU New Faculty Improvement Program.
Amrita Poonia has published 91 research papers and 42 book chapters in reputed journals and academic publications related to food science, dairy technology, nutrition, food packaging, and sustainable food systems.
Amrita Poonia has held several leadership and professional positions in academic and scientific organizations. She currently serves as Treasurer-cum-Secretary of the Indian Dairy Association, Eastern UP Chapter, and Treasurer of AFSTI, Varanasi Chapter.
Amrita Poonia’s research has significantly contributed to advancements in dairy science, food sustainability, and functional food development. Her interdisciplinary approach toward food waste valorization and functional ingredient fortification supports sustainable food systems and improved public health outcomes.
Amrita Poonia’s academic profile strongly aligns with the objectives of the Research Excellence Award under the Indian Scientist Awards framework. Her extensive contributions in food science, dairy technology, functional foods, and sustainable innovation reflect strong scientific excellence and research leadership.
Amrita Poonia is a distinguished academician, researcher, and food technologist whose work significantly contributes to functional dairy foods, sustainable food processing, nanotechnology, and food waste valorization. Through research excellence, academic leadership, professional service, and innovative teaching initiatives, she continues to advance the fields of Dairy Science and Food Technology at national and international levels.
| Savidh Khan | |
|---|---|
| Affiliation | Thapar Institute of Engineering and Technology, Patiala |
| Country | India |
| Google Scholar | nGlPEKUAAAAJ |
| ORCID | 0000-0001-6149-6992 |
| Citations | 465 |
| h-index | 12 |
| i10-index | 13 |
| Research Papers | 32 |
| Specialization | Materials Science, Glasses & Ceramics, SOFC, Nanomaterials, Photonics |
| Event | Indian Scientist Awards |
Savidh Khan
Thapar Institute of Engineering and Technology, Patiala, India
Savidh Khan is an Indian physicist, materials scientist, and academician specializing in advanced glasses, ceramics, nanomaterials, solid oxide fuel cells (SOFCs), photonics, optoelectronics, and radiation shielding materials. He is currently serving as Assistant Professor in the Department of Physics and Material Science at Thapar Institute of Engineering and Technology, Patiala, Punjab, India.
His research contributions primarily focus on structural, optical, thermal, dielectric, and electrical characterization of advanced functional materials for energy, biomedical, environmental, and optoelectronic applications. Khan has significantly contributed to glass science, nanoceramics, SOFC electrolytes, radiation dosimetry, and multifunctional materials research through high-quality scientific publications and collaborative interdisciplinary research.
Savidh Khan is actively involved in advanced materials science research with major contributions in glass and ceramic materials, nanostructured functional materials, solid oxide fuel cells, photonic materials, radiation shielding systems, and optoelectronic applications. His work integrates materials synthesis, thermal characterization, optical analysis, dielectric studies, and electrochemical investigations for energy and environmental applications.
Through extensive interdisciplinary collaborations and scientific publications in reputed international journals, Khan has contributed significantly toward the advancement of functional oxide systems, borosilicate glasses, vanadium oxide ceramics, nanocomposites, and sustainable materials for modern technological applications.
Materials Science, Solid Oxide Fuel Cell, Glasses and Ceramics, Nanomaterials, Radiation Shielding, Photonics, Optoelectronics, Vanadium Oxides, Borosilicate Glasses, Glass-Ceramics, Functional Materials, Electrochemical Materials, Thermal Analysis, Dielectric Materials.
Modern materials science plays a vital role in energy technologies, environmental sustainability, electronics, biomedical engineering, and photonic applications. Functional materials such as advanced glasses, ceramics, nanocomposites, and oxide systems are increasingly important for developing next-generation energy devices, optical systems, radiation shielding materials, and electrochemical applications.
Savidh Khan’s research significantly contributes to these emerging domains through the synthesis, characterization, and optimization of multifunctional materials for solid oxide fuel cells, photonics, dielectric systems, and biomedical applications. His work demonstrates strong interdisciplinary integration between physics, chemistry, engineering, and materials technology.
Savidh Khan currently serves as Assistant Professor in the Department of Physics and Material Science at Thapar Institute of Engineering and Technology, Patiala. He completed his Ph.D. in Physics/Materials Science from Thapar Institute of Engineering and Technology in 2021 with research focused on vanadium oxide-based systems for solid oxide fuel cell applications.
He possesses extensive teaching and research experience across reputed academic institutions including Thapar Institute of Engineering and Technology, RIMT University, SITE Meerut, Meerut College, and D.N. College Meerut. His academic expertise includes advanced ceramics, glass science, nanomaterials, electrochemical materials, photonics, and radiation dosimetry.
Khan has supervised multiple doctoral and postgraduate research projects and actively collaborates with national and international institutions in multidisciplinary materials research.
Savidh Khan has made substantial contributions in the field of functional oxide materials, borosilicate glasses, vanadium oxide systems, nanoceramics, and electrochemical materials for energy applications. His research extensively investigates structural, thermal, optical, dielectric, luminescence, and conducting properties of advanced ceramic and glass systems.
His work on vanadium oxide-based ceramics and glass systems has demonstrated significant applications in intermediate-temperature solid oxide fuel cells (IT-SOFCs), energy devices, photonic materials, and radiation shielding systems. He has also contributed toward photocatalytic materials, optical glasses, rare-earth-doped systems, and nanocomposite electrode materials for supercapacitors.
Khan’s interdisciplinary approach combines materials synthesis, crystallization kinetics, impedance spectroscopy, thermal analysis, spectroscopy, and structural engineering to develop high-performance multifunctional materials for advanced scientific and industrial applications.
Savidh Khan has established research collaborations with several reputed national and international institutions including IIT Delhi, IIT (ISM) Dhanbad, CSIR-NGRI Hyderabad, NIT Jalandhar, Federal University Lafia (Nigeria), Academia Sinica Taiwan, Punjabi University, Chandigarh University, and Thapar Institute of Engineering and Technology.
Savidh Khan’s research contributions have significantly advanced the understanding of multifunctional glass and ceramic systems for energy, photonic, dielectric, biomedical, and environmental applications. His work on SOFC electrolyte materials, rare-earth-doped glasses, nanocomposites, and radiation shielding systems demonstrates strong scientific and technological relevance.
With more than 32 peer-reviewed research publications, substantial citations, interdisciplinary collaborations, and active participation in scientific conferences, his research demonstrates growing academic recognition in materials science and functional materials research.
His scientific contributions support the development of sustainable materials technologies with applications in clean energy systems, photonics, biomedical engineering, and advanced electronics.
Savidh Khan’s academic profile strongly aligns with the objectives of the Research Excellence Award under the Indian Scientist Awards framework. His research contributions in materials science, glass and ceramic technology, solid oxide fuel cells, nanomaterials, and photonics represent impactful and innovation-oriented scientific advancement.
His publication record in reputed international journals, interdisciplinary collaborations, doctoral supervision, conference presentations, and sustained research activities demonstrate excellence in scientific research and academic leadership in advanced materials science.
The translational significance of his work in energy technologies, radiation shielding, optoelectronics, and functional materials further strengthens his suitability for recognition in the field of materials science and engineering research.
Savidh Khan is an accomplished materials scientist and researcher whose scholarly contributions significantly advance functional materials science, solid oxide fuel cell technologies, photonic materials, and glass-ceramic systems. Through interdisciplinary research, scientific publications, student mentorship, and collaborative innovation, he continues to contribute meaningfully toward modern materials research and technological development at national and international levels.