SM
Sukanta Mandal
Indian Institute of Technology Kharagpur, National Institute of Technology Patna, Ewha Womans University, Institut Català d'Investigació Química, Assam University
Employment
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Indian Institute of Technology Kharagpur Associate Professor2024 - Present
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Indian Institute of Technology Kharagpur Assistant Professor2015 - 2024
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National Institute of Technology Patna Assistant Professor2014 - 2015
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Assam University DST-INSPIRE Faculty2013 - 2014
Education
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Ewha Womans University Post-doc2011 - 2013
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Institut Català d'Investigació Química Post-doc2009 - 2011
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Indian Institute of Technology Kanpur Ph.D.2003 - 2009
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University of Burdwan M.Sc.2001 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (27)
- Copper(ii) complexes for electrocatalytic dioxygen reduction: controlling selectivity via a proton relay mode Save
- Enhancement of Oxidative Asynchronicity in Hydrogen Atom Abstraction by a Mononuclear Mn(III)-OMe Complex via Protonation and Sodium Ion Binding Save
- Impact of ligand steric hindrance on the phenoxazinone synthase-like reactivity and antibacterial activity of cobalt(iii) complexes of N2O donor ligands Save
- Carboxylato-bridged linear trinuclear copper(II) ferromagnetic complexes Save
- Monomeric Fe(III)‐Hydroxo and Fe(III)‐Aqua Complexes Display Oxidative Asynchronous Hydrogen Atom Abstraction Reactivity Save
- Flavonol dioxygenation catalysed by cobalt(ii) complexes supported with 3N(COO) and 4N donor ligands: a comparative study to assess the carboxylate effects on quercetin 2,4-dioxygenase-like reactivity Save
- Dangling Carboxylic Group That Participates in O–O Bond Formation Reaction to Promote Water Oxidation Catalyzed by a Ruthenium Complex: Experimental Evidence of an Oxide Relay Pathway Save
- Oxygenolysis of a series of copper(II)-flavonolate adducts varying the electronic factors on supporting ligands as a mimic of quercetin 2,4-dioxygenase-like activity Save
- The effects of metal cofactors on the reactivity of quercetin 2,4-dioxygenase: synthetic model studies with M(ii)-complexes (M = Mn, Co, Ni, Cu, Zn) and assessment of the regulatory factors in catalytic efficacy Save
- The impact of secondary coordination sphere engineering on water oxidation reactivity catalysed by molecular ruthenium complexes: a next-generation approach to develop advanced catalysts Save