Chhavi Sharma
IIT Roorkee, University of Bath, Indian Institute of Technology Roorkee, Panjab University, Sri Sukhmani Institute of Engineering and Technology
About
Research focuses on synthesising and optimising advanced electrochemical materials for energy applications, with particular emphasis on conducting polymers, ionic liquids, and 2D carbon nanostructures. It includes materials like rGO, MoS₂, MXene, Fe₃O₄, Co₃O₄, carbon quantum dots, and ionomers such as sulfonated PEEK and Polysulfone. These materials are synthesised through innovative techniques to address key energy conversion and storage challenges.
Key applications include the development of ionic diodes using Sulfonated PEEK, fuel cell membranes designed for improved efficiency, and electrocatalysis with advanced materials to drive green hydrogen production. Through advanced electrochemical characterisation methods (EIS, XPS, Raman spectroscopy), high-performance non-precious metal electrocatalysts are engineered to enhance performance in energy storage and conversion technologies. The research aims to create scalable and sustainable solutions for soft electronics and electrocatalysis, advancing the development of cleaner, more efficient energy technologies.
Employment
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IIT Roorkee Postdoctoral Research Associate2026 - Present
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University of Bath Commonwealth Fellow2023 - 2024
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Indian Institute of Technology Roorkee PhD Scholar2019 - 2025
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Dev Bhoomi Uttarakhand University Assistant Professor2015 - 2018
Education
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Indian Institute of Technology Roorkee PhD Scholar2019 - 2025
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Panjab University M.Tech2013 - 2015
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Sri Sukhmani Institute of Engineering and Technology B.Tech2007 - 2011
Projects & Funding
Projects & funding information is unavailable.
Publications (14)
- Synergistically tuned ionic liquid supported redox active cobalt oxide/PANI electrocatalyst for boosting molecular hydrogen evolution Save
- Biodegradable Polymers for Wearable Electronics and Device Fabrication Save
- Electro‐Co‐Polymerisation of Polypyrrole‐Polyaniline Composites in Ionic Liquids for Metal‐Free Hydrogen Evolution Electrodes Save
- Ionic Diode Current Rectification in High Salt Media with Sulfonated Poly(oxy‐1,4‐phenylene‐oxy‐1,4‐phenylenecarbonyl‐1,4‐phenylene) Save
- Morphology, rheology, properties, and applications of nanocellulose and nanochitin-filled polymer blends Save
- Biodegradable Polymers for Wearable Electronics and Device Fabrication Save
- Scaffold Fabrication Techniques of Biomaterials for Bone Tissue Engineering: A Critical Review Save
- Review—Combining Experimental and Engineering Aspects of Catalyst Design for Photoelectrochemical Water Splitting Save
- Materials for Electrical Detection of Water Pollutants Save
- Methods of inorganic pollutants detection in water Save