YC
Dr Yatendra S Chaudhary
CSIR-Institute of Minerals and Materials Technology, Academy of Scientific and Innovative Research, Dayalbagh Educational Institute Faculty of Science, Oxford University
Employment
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CSIR-Institute of Minerals and Materials Technology Chief Scientist2024 - Present
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Academy of Scientific and Innovative Research PROFESSOR2019 - Present
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CSIR-Institute of Minerals and Materials Technology Senior Principal Scientist2019 - 2024
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Oxford University MARIE CURIE FELLOW2010 - 2012
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CSIR-Institute of Minerals & Materials Technology PRINCIPAL SCIENTIST2008 - 2019
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Tata Institute of Fundamental Research POSTDOCTORAL FELLOW2005 - 2007
Education
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Dayalbagh Educational Institute Faculty of Science Ph.D.2000 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (60)
- Synergistic Coupling of MoS2 with Electron-Rich MXene for CO2 Conversion to Ethanol under Visible Light Save
- Ultrasmall Hematite Nanocrystals Interfaced Multilayered Carbon Onions To Synergistically Promote Selective Nitrogen Reduction to Ammonia under Ambient Conditions Save
- In situ hard templating-assisted, facet-engineered, two-dimensional non-van der Waals CuInS2 for efficient CO2 reduction reaction Save
- Electroactive coupling of formate dehydrogenase with Ni-modified triazine frameworks for efficient and selective CO2 photoreduction Save
- Deciphering the Photophysical Properties of Nonplanar Heterocyclic Compounds in Different Polarity Environments Save
- Dual emissive and stable surface-capped silica based nanoparticles for white light emission Save
- Unravelling the white light emission in a single-phase new stoichiometric vanadate phosphor synthesized by rapid low-temperature one-pot synthesis and its W-LED prototype with high CRI and luminous efficacy Save
- The Synergistic Chemical Coupling of Nanostructured MoS2 with Nitrogen Deficient 2-D Triazine based Polymeric m-C3Nx for Efficient and Selective CO2 Photocatalytic Conversion to CO Save
- Band-structure tunability via the modulation of excitons in semiconductor nanostructures: manifestation in photocatalytic fuel generation Save
- Enhanced Nitrogen Reduction to Ammonia by Surface- and Defect-Engineered Co-catalyst-Modified Perovskite Catalysts under Ambient Conditions and Their Charge Carrier Dynamics Save