Dr. Ashish Kumar
Sardar Patel University Mandi, Indian Institute of Technology Mandi, Himachal Pradesh University
About
Ashish Kumar received his M.Sc. and M.Phil. degrees in chemistry from Himachal Pradesh University, Shimla, India. He obtained his Ph.D. from Indian Institute of Technology Mandi, India, in October 2021. Since May 2022, he is working as an Assistant Professor in Chemistry at Sardar Patel University Mandi, Himachal Pradesh, India. His area of research interest includes the design and development of efficient photocatalytic materials for sustainable energy and environment-oriented applications viz. H2 evolution, N2 fixation and wastewater treatment.
Employment
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Sardar Patel University Mandi Assistant Professor2022 - Present
Education
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Indian Institute of Technology Mandi Ph.D2016 - 2021
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Himachal Pradesh University M.Phil2014 - 2016
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Himachal Pradesh University M.Sc.2012 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (63)
- From Structure to Solar Reactivity: Unraveling the Photocatalytic Ammonia Production on Perovskite Platforms Save
- Engineering two-dimensional MXene based materials for photocatalytic organic pollutant degradation: Progress, challenges, and future perspectives Save
- Oxygen Vacancy and Alkali Ion-Assisted Nitrogen Fixation with Efficient Solar Ammonia Production over NiTiO3 Based Photocatalysts Save
- Catalyzing the Nitrogen Fixation under Ambient Environment: Progress and Prospects in TiO2‐Based Nanomaterials for Solar‐Driven Ammonia Synthesis Save
- Triphase Photocatalysis: Beyond Conventional Diphase Photocatalytic Reactions Save
- Next-generation 2D Nanomaterials for Sustainable Energy and Environment-oriented Applications Save
- Two-dimensional Nanomaterial-based Heterogeneous Catalysts for Sustainable Ammonia Production Save
- Artificial intelligence interventions in 2D MXenes-based photocatalytic applications Save
- Photocatalysis for Sustainable Nitrogen Fixation: Fundamentals, Catalyst Design, Nanoarchitectonics, Applications, and Future Prospects Save
- Two-dimensional Nanomaterial-based Heterogeneous Catalysts for Sustainable Ammonia Production Save