Kushal Sengupta
Max Planck Institute for Chemical Energy Conversion(DE)
Publications by Year
Research Areas
Electrocatalysts for Energy Conversion, Electrochemical Analysis and Applications, Metal-Catalyzed Oxygenation Mechanisms, Porphyrin and Phthalocyanine Chemistry, Electrochemical sensors and biosensors
Most-Cited Works
- → Cobalt Corrole Catalyst for Efficient Hydrogen Evolution Reaction from H2O under Ambient Conditions: Reactivity, Spectroscopy, and Density Functional Theory Calculations(2013)194 cited
- → Factors Determining the Rate and Selectivity of 4e–/4H+ Electrocatalytic Reduction of Dioxygen by Iron Porphyrin Complexes(2017)112 cited
- → Electrocatalytic O2-Reduction by Synthetic Cytochrome c Oxidase Mimics: Identification of a “Bridging Peroxo” Intermediate Involved in Facile 4e–/4H+ O2-Reduction(2015)109 cited
- → Selective four electron reduction of O2 by an iron porphyrin electrocatalyst under fast and slow electron fluxes(2012)107 cited
- → Direct observation of intermediates formed during steady-state electrocatalytic O 2 reduction by iron porphyrins(2013)101 cited
- → Second Sphere Control of Redox Catalysis: Selective Reduction of O2 to O2– or H2O by an Iron Porphyrin Catalyst(2013)70 cited
- → Resonance Raman and Electrocatalytic Behavior of Thiolate and Imidazole Bound Iron Porphyrin Complexes on Self Assembled Monolayers: Functional Modeling of Cytochrome P450(2013)70 cited
- → Concerted Proton–Electron Transfer in Electrocatalytic O2 Reduction by Iron Porphyrin Complexes: Axial Ligands Tuning H/D Isotope Effect(2015)66 cited
- → O2 Reduction Reaction by Biologically Relevant Anionic Ligand Bound Iron Porphyrin Complexes(2013)65 cited
- → In Situ Mechanistic Investigation of O2 Reduction by Iron Porphyrin Electrocatalysts Using Surface-Enhanced Resonance Raman Spectroscopy Coupled to Rotating Disk Electrode (SERRS-RDE) Setup(2016)60 cited