Dr. Suneel Sharma | Energy Storage | Best Researcher Award
Dr. Suneel Sharma , Shri Ganesh Rai Post Graduate College, Dobhi Jaunpur Uttar Pradesh , India.
Dr. Suneel Kumar Sharma is an accomplished Assistant Professor in the Department of Physics at Shri Ganesh Rai Post Graduate College, Dobhi, Jaunpur, Uttar Pradesh. With an M.Sc. and Ph.D. in Physics, he specializes in energy storage and supercapacitor device development. Dr. Sharma’s research focuses on advanced techniques like SILAR deposition, hydrothermal methods, cyclic voltammetry, and electrochemical impedance spectroscopy. He has published nine SCI/Scopus-indexed articles and holds a citation index of 71. Additionally, he serves as a reviewer for over eight international journals, contributing to academic excellence. His dedication to innovative energy solutions underpins his professional achievements.
Professional Profile:
Suitability for Best Researcher Award
Dr. Suneel Kumar Sharma, an Assistant Professor in the Department of Physics at Shri Ganesh Rai Post Graduate College, has demonstrated exceptional research expertise in the field of energy storage, focusing on supercapacitor electrode and device fabrication using methods like the SILAR technique, hydrothermal technique, and electrochemical analysis. He has contributed to nine articles in SCI, Scopus journals and has a citation index of 71. His innovative approach and dedication to advancing research in energy storage technologies make him a strong candidate for the Best Researcher Award.
Education Background:
Dr. Suneel Kumar Sharma has a strong academic foundation in Physics, holding both an M.Sc. and a Ph.D. in the discipline. His advanced education has equipped him with expertise in energy storage technologies and supercapacitor devices, areas in which he has made significant contributions. Dr. Sharma’s academic journey has emphasized both theoretical understanding and practical application, enabling him to excel in innovative research techniques such as SILAR deposition, hydrothermal methods, and electrochemical analysis. His education has provided the foundation for his current role as an Assistant Professor, where he continues to inspire and mentor students in the field of Physics.
Dr. Suneel Kumar Sharma is currently serving as an Assistant Professor in the Department of Physics at Shri Ganesh Rai Post Graduate College, Dobhi, Jaunpur, Uttar Pradesh, a position he has held since July 2022. With a strong academic foundation in Physics (M.Sc. and Ph.D.), he has focused on teaching and advancing research in energy storage technologies. Dr. Sharma specializes in supercapacitor electrode and device fabrication, employing techniques such as SILAR deposition, hydrothermal methods, and electrochemical analysis. His role extends to mentoring students and contributing to scientific communities as a reviewer for international journals, reflecting his professional expertise and commitment.
🌍Research Contributions On Energy Storage
Dr. Suneel Kumar Sharma has made significant research contributions in the field of energy storage, particularly in supercapacitor electrode fabrication and device development. Utilizing advanced techniques such as SILAR deposition, hydrothermal methods, cyclic voltammetry, galvanostatic charge/discharge, and electrochemical impedance spectroscopy, he has developed innovative solutions for efficient energy storage. His work is further enriched by fractal analysis, providing deeper insights into material behavior. With nine SCI/Scopus-indexed publications and a citation index of 71, Dr. Sharma has established himself as a dedicated researcher. His contributions aim to advance sustainable energy technologies and foster innovation in the field of energy storage.
Award and Recognition
Dr. Suneel Kumar Sharma has been recognized for his significant contributions to the field of energy storage and supercapacitor device development. With nine SCI/Scopus-indexed publications and a citation index of 71, his work demonstrates academic excellence and research innovation. As a reviewer for more than eight international journals, he has played a vital role in advancing scientific discourse. Dr. Sharma’s dedication to sustainable energy solutions and his expertise in advanced techniques such as SILAR deposition and hydrothermal methods have earned him respect in the academic community. His achievements reflect his commitment to excellence and impactful research.
Publication Top Notes
Solid-state symmetric supercapacitor based on Y doped Sr(OH)₂ using SILAR method
📖 Energy, 197, 117163 (2020)
🔢 Citations: 33
High performance solid-state symmetric supercapacitor based on reindeer moss-like structured Al(OH)₃/MnO₂/FeOOH composite electrode for energy storage applications
📖 Energy, 224, 120137 (2021)
🔢 Citations: 20
High performance binary composite (Sr(OH)₂/CoO(OH)) thin film for solid-state supercapacitor
📖 Journal of Energy Storage, 51, 104328 (2022)
🔢 Citations: 13
First report on binder-free boehmite (AlOOH) based prototype, flexible, high-energy and high-power density solid-state symmetric supercapacitor
📖 Journal of Energy Storage, 78, 110036 (2024)
🔢 Citations: 6
Development of highly efficient supercapacitor based on a ternary (Sr(OH)₂/CoO(OH)/MnO₂) composite: With tuberose mesoporous nanospheres structure
📖 Journal of Energy Storage, 79, 110140 (2024)
🔢 Citations: 4
Supercapacitive performance evaluation of chemically synthesized binder-free Y(OH)₃ electrode
📖 Journal of Alloys and Compounds, 901, 163617 (2022)
🔢 Citations: 4
Efficient Electrochemical Performance of Sr(OH)₂:MnO₂ Binary Composites for Solid-State Symmetric Supercapacitor
📖 ChemistrySelect, 9 (21), e202303325 (2024)
🔢 Citations: 2
2-D Hexagonal Plates Architectured Zinc Titanate Perovskite-Based High-Performance Solid-State Supercapacitor
📖 Ceramics International (2025)
Enriched performance of solid-state symmetric supercapacitor based on (Sr(OH)₂/FeO(OH)) binary composite electrode
📖 Materials Chemistry and Physics, 130357 (2025)
Fractal supported electrochemical analysis of MoO₃ decorated AlOOH binary composite for supercapacitor application
📖 Surfaces and Interfaces, 54, 105199 (2025)