Ashish Gupta
Also known as: ASHISH GUPTA
Thapar Institute of Engineering and Technology, National Institute of Technology Kurukshetra, National Physical Laboratory CSIR
About
Dr. Ashish Gupta is currently working as Assistant Professor (research) at Department of energy and environment, TIET, Patiala. He has worked as CSIR-Senior Research Associate at National Institute of Technology Kurukshetra. He is interested in working on Lithium ion batteries and other energy storage devices. He is working on various carbon-based materials supercapacitors and water-splitting applications. He has completed PhD from Advanced Carbon Products and Metrology department in CSIR-NPL, India under AcSIR affiliation. He has also worked on electrospun nanofibers for applications in Batteries, Supercapacitors, and Water Purification.
Employment
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Thapar Institute of Engineering and Technology Assistant Professor (Research)2024 - Present
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National Institute of Technology Kurukshetra Senior Research Associate2021 - 2024
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National Physical Laboratory CSIR RESEARCH ASSOCIATE2018 - 2021
Education
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National Physical Laboratory CSIR Ph.D.2011 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (50)
- Tailoring carbon nanomaterial architectures for CO2 capture: structure–property relationships, surface engineering, and future perspectives Save
- Hierarchical porous activated carbon derived from rice stubble, bajra husk, amla leaves and royal palm leaves for efficient microwave absorption Save
- High energy density-oriented hybrid supercapacitor based on PELAC@NiCo2S4/CC and heteroatom-doped porous carbon electrodes Save
- Flower-Shaped NiCo2S4 Microspheres for Electrochemical Oxygen Evolution Reaction Save
- Cobalt Substitution on SnS-rGO Composites for Efficient Oxygen and Hydrogen Evolution Reactions Save
- MXene/cobalt ferrite/carbon materials based composites for efficient microwave absorption Save
- Rice husk biomass torrefied without carrier gas: influence on physico-thermal properties as co-combusted renewable fuel Save
- Nonwoven Polymeric Nanofiber Sheets: Path Forward Toward a New Class of Hybrid Flexible Thermoelectrics Save
- Enhanced electrical and magnetic functionality of Ni-Zn-co-doped CoFe2O4 rGO nanocomposites Save
- Co-combustion properties of torrefied rice straw-sub-bituminous coal blend and its Hardgrove Grindability Index Save