KK
Kamlesh Kumar
Banaras Hindu University, Jai Prakash Vishwavidyalaya, Indian Institute of Technology Kanpur, Deen Dayal Upadhyay Gorakhpur University, University of Johannesburg
Employment
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Banaras Hindu University Assistant Professor2018 - Present
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Jai Prakash Vishwavidyalaya Assistant Professor2017 - 2018
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University of Johannesburg Postdoctoral Research Fellow2013 - 2017
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Lunds Universitet Postdoctoral Research Fellow2012 - 2013
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Technion Israel Institute of Technology Postdoctoral Research Fellow2012 - 2012
Education
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Indian Institute of Technology Kanpur PhD2007 - 2012
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Deen Dayal Upadhyay Gorakhpur University M.Sc.2004 - 2006
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Deen Dayal Upadhyay Gorakhpur University B.Sc.2001 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (23)
- Synthesis, structural characterization, and electrocatalytic hydrogen generation activity of fac-tris(β-oxodithioester-O^S)cobalt(iii) complexes Save
- Dinuclear PdII Bis-MIC/PCy3 Pre-Catalyst for Cooperative Catalysis: Suzuki–Miyaura Coupling of Aryl Chlorides and α-Arylation of Cyclic Amide Save
- Regio‐ and Chemo‐Selective Hydration of Terminal Alkynes Catalyzed by Bis(dimethylglyoximato)cobalt(III) Complexes Save
- Ni(ii)-Dithiocarbamate and -diphosphine coordination complexes as pre-catalysts for electrochemical OER activity Save
- Axial ligand-induced high electrocatalytic hydrogen evolution activity of molecular cobaloximes in homo- and heterogeneous medium Save
- The rigidity and chelation effect of ligands on the hydrogen evolution reaction catalyzed by Ni(ii) complexes Save
- Chlorocobaloxime containing N-(4-pyridylmethyl)-1,8-naphthalamide peripheral ligands: synthesis, characterization and enhanced electrochemical hydrogen evolution in alkaline medium Save
- Isonicotinate-Zn(ii)/Cd(ii) bridged dicobaloximes: synthesis, characterization and electrocatalytic proton reduction studies Save
- Boosting photocatalytic hydrogen generation by the combination of tunable cobaloxime and covalent organic framework Save
- Homoleptic Ni(ii) dithiocarbamate complexes as pre-catalysts for the electrocatalytic oxygen evolution reaction Save