About
I am a Postdoctoral Research Associate at the Korea Institute of Energy Technology (KENTECH), focusing on Li/Na-based halide solid electrolytes for solid-state batteries. Previously, I worked under the GAIL India project at the Centre for Nano and Soft Matter Sciences (CeNS), Bengaluru, where I developed Pt-based alloy catalysts on a gram scale for fuel cell systems using a customized microwave reactor.
I earned my PhD in Physical/Materials Chemistry from IIT Madras, where I designed MOFs and MOF-derived materials (porous carbons, oxides, sulfides, hydroxides, etc.) for supercapacitors and methanol fuel cell applications. In addition, I contributed to projects on the oxygen reduction reaction (ORR), urea oxidation reaction (UOR), and CO₂ conversion to cyclic carbonates, which broadened my expertise in electrocatalysis and sustainable energy materials.
With expertise spanning solid-state batteries, electrocatalysis, and nanomaterials, I am passionate about advancing next-generation energy storage and conversion technologies.
Employment
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Indian Institute of Technology Madras PhD Scholar2017 - 2024
Education
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Indian Institute of Technology Madras PhD2017 - 2024
Projects & Funding
Projects & funding information is unavailable.
Publications (19)
- Bridging Chemistry and Composition-Space Exploration: Particle Swarm Optimization of Multicomponent Glassy Sulfide Electrolytes Save
- Bridging chemistry and composition-space exploration: Particle swarm optimization of multicomponent glassy sulfide electrolytes Save
- Impact of Impurities in Layered Bimetallic Transition Metal Oxides (ZnMxO4, M = Fe, Mo) for Aqueous Charge Storage Applications Save
- Ball-milled Ni@Mo2C/C nanocomposites as efficient electrocatalysts for urea oxidation Save
- Ball-milled MoO3@NiCo2Se4 composite for supercapacitor electrode Save
- Ball-milled Ni@Mo2C/C nanocomposites as efficient electrocatalysts for urea oxidation Save
- Rationally designed FeCoX (X = O, S, Se) nanostructures derived from needle-shaped FeCo-NH2-BDC MOF for enhanced supercapattery applications Save
- Ball-milled MoO3@NiCo2Se4 composite for supercapacitor electrode Save
- Design and synthesis of M-TCPP@PVP (M = Ni, Zn) MOF composites for enhanced ammonia gas sensing and supercapacitor applications Save
- Catalytic coupling of CO2 and epoxides with metal substituted Keggin based Hybrid Materials Save