Dharmendra Kumar Yadav
University of Delhi, Institute of nanoscience and technology, Banaras Hindu University
About
I would like to take this opportunity to introduce myself as Dr. Dharmendra Kumar Yadav, completed my Ph.D. program in the Electrocatalysis laboratory of Dr. Vellaichamy Ganesan in Department of Chemistry, Banaras Hindu University, Varanasi (India), on the thesis titled “Electrocatalytic influence of metal nanoparticles on clay and metal organic framework modified electrodes”. After that I have completed my first postdoc on “Engineering Two-dimensional Ternary Transition Metal Chalcogenides towards Enhanced Photocatalytic Activity” under the supervision of Prof. H. N. Ghosh in the Institute of Nanoscience and Technology (INST), Mohali, Punjab. Recently, I have completed my second postdoc on “Metal-Organic Framework and Polymer Gel based Solid Electrolytes: Energy Storage Applications” under the supervision of Dr. Sasanka Deka, Department of Chemistry, University of Delhi.
Employment
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University of Delhi Dr. D. S. Kothari Postdoc2021 - 2024
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Institute of nanoscience and technology Research Associate-I2021 - 2021
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Institute of nanoscience and technology Postdoctoral2020 - 2021
Education
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Banaras Hindu University Ph.D.2013 - 2019
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Banaras Hindu University M.Sc.2010 - 2012
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Banaras Hindu University B.Sc.2007 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (14)
- Breaking Barriers: Synergistic Interactions Between Pt Single Atoms and Nitrogen‐Rich g‐C3N4 for Maximized Photocatalytic Hydrogen Production Save
- Maximized Synergistic Interaction of Pd Single Atoms with CuCo2S4 Nanosheets Catalysts for High‐Efficiency Photocatalytic H2 Production and O2 Reduction via Enhanced Charge Separation and Transfer Save
- Metal–Organic Framework-Derived ZnCoNi-Layered Double-Hydroxide Nanosheets with Charge Storage Characteristics for Supercapacitors Save
- Cobalt oxide decorated zirconium oxide immobilized multiwalled carbon nanotubes as scaffolds for supercapacitors and the CO2 reduction reaction Save
- Defect-Mediated Slow Carrier Recombination and Broad Photoluminescence in Non-Metal-Doped ZnIn2S4 Nanosheets for Enhanced Photocatalytic Activity Save
- Copper oxide immobilized clay nano architectures as an efficient electrochemical sensing platform for hydrogen peroxide Save
- Sensitive determination of kojic acid in tomato sauces using Ni–Fe layered double hydroxide synthesized through Fe-MIL-88 metal-organic framework templated route Save
- Recent strategy(ies) for the electrocatalytic reduction of CO2: Ni single-atom catalysts for the selective electrochemical formation of CO in aqueous electrolytes Save
- Gold Nanoparticles Incorporated in a Zinc‐Based Metal‐Organic Framework as Multifunctional Catalyst for the Oxygen Reduction and Hydrogen Evolution Reactions Save
- Templated Synthesis of Nickel−Iron Layered Double Hydroxide for Enhanced Electrocatalytic Water Oxidation: Towards the Development of Non-Precious-Metal Catalysts Save