About
I am Dr. Sahil Kumar, a dedicated researcher in nanomaterials and renewable energy technologies. My Ph.D. from Shoolini University focused on synthesizing rare-earth-doped bismuth ferrite nanofibers for advanced applications in perovskite solar cells. With expertise in electrospinning, hydrothermal, and solid-state synthesis methods, I specialize in the development and characterization of innovative materials. My skillset includes advanced techniques like UV-Vis spectroscopy, FT-IR, XRD, and SEM, as well as data analysis tools such as Origin and FullProf Suite.
I have contributed to impactful projects, including:
Enhancing photovoltaic behavior through reduced graphene oxide as an electron transport layer.
Developing rare-earth-doped bismuth ferrite nanofibers for improved energy conversion efficiency.
Recognized for my innovative approach, I hold a granted patent for "A Process for Synthesis of Reduced Graphene Oxide" (Patent No. 202011014155, 2023). I am also an active contributor to international journals and a co-author of several high-impact publications.
Passionate about clean energy solutions and sustainable technologies, I strive to advance renewable energy systems through cutting-edge research and innovation.
Employment
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Shoolini University of Biotechnology and Management Sciences Assistant Professor2025 - Present
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Shoolini University of Biotechnology and Management Sciences Project Associate-II2021 - 2025
Education
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Shoolini University of Biotechnology and Management Sciences Ph.D.2019 - 2023
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Shoolini University of Biotechnology and Management Sciences Master in Physics2017 - 2019
Projects & Funding
Projects & funding information is unavailable.
Publications (44)
- Effect of sintering temperature on the structural and dielectric properties of hydrothermally synthesized 0.5BCT-0.5BZT ceramics Save
- Recent advances and prospects of transition metal dichalcogenides (TMDs) for next-generation solar cells: materials engineering and device integration Save
- Next-generation perovskite solar cells empowered by carbon based materials: challenges and future opportunities Save
- Perovskite-powered dopants for electrodes in next-generation solid oxide fuel cells Save
- Impact of Transition Metal Doping on the Structural and Electrochemical Properties of SrCoO3 Perovskites for OER Applications Save
- Multifunctional perovskite materials for energy harvesting and optoelectronic devices Save
- Structural and optical analysis of carbon composites derived from Ni/ Cu–PVDF-HFP nanofibers via spun calcination method Save
- The role of space group symmetry in BiFeO3 for multifunctional energy harvesting applications Save
- Progress in Perovskite Oxide Electrocatalysts for Efficient Hydrogen and Oxygen Evolution Reactions Save
- Wearable and flexible perovskite solar cells Save