VK
Vivek Kumar
Indian Institute of Information Technology, Design and Manufacturing, Kancheepuram, National Institute of Technology Meghalaya, Indian Institute of Technology Delhi
Employment
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Indian Institute of Information Technology, Design and Manufacturing, Kancheepuram Associate Professor2024 - Present
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Indian Institute of Information Technology, Design and Manufacturing, Kancheepuram Assistant professor2018 - 2024
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National Institute of Technology Meghalaya Assistant Professor2015 - 2018
Education
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Indian Institute of Technology Delhi PhD? - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (48)
- 3D Plasmonic Ag Nanodendrites as Highly Efficient SERS Substrates for Ultra-Trace Detection of Ascorbic Acid Save
- A first-principles study of efficient and reversible solid-state hydrogen storage in 3d transition metal-anchored twin graphene enabled by d-orbital mediated Kubas interactions Save
- Electrochemical Mechanistic and Kinetic Studies of Redox‐Active Cobalt(II)–Iron(II)–Hydroxyquinolinate on Reduced Graphene Oxide for Hybrid Supercapacitor Application Save
- Electrochemical Evaluation of Redox Active Cobalt‐Oxyquinolinate Complex Layered on Reduced Graphene Oxide for Hybrid Supercapacitor Application Save
- Charge injection dynamics in oxygen-functionalized and heteroatom-doped reduced graphene oxide and their impact on supercapacitor performance: An experimental and DFT investigation Save
- Spectroscopic Visualization of Polarons and Intervalence Charge Transfer in MoO3–x Nanostructures Via Defect Engineering Save
- Magnesium ammonium phosphate nanosheets: Synthesis, characterization, and electrochemical performance for high-capacity supercapacitors Save
- DFT investigation of atom-implanted 2D gC3N4 for high-performance supercapacitor electrodes: Quantum capacitance and surface charge density analysis Save
- Fano resonance-induced asymmetric scissors modes and anharmonic interactions in MoO3 nanostructures Save
- Tailoring and optimizing the role of metal contacts (Al, Ag, Au) on carrier mobility, conductivity and efficiency of silicon nanowire-based metal–semiconductor–metal devices Save