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Md Estak Ahmed
Md Estak Ahmed
Ph.D., IACS, Postdoctoral Researcher at Michigan State University, USA
Email verificata su msu.edu
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Citata da
Citata da
Anno
Amorphous molybdenum sulfide quantum dots: an efficient hydrogen evolution electrocatalyst in neutral medium
D Dinda, ME Ahmed, S Mandal, B Mondal, SK Saha
Journal of Materials Chemistry A 4 (40), 15486-15493, 2016
1202016
Biochemical and artificial pathways for the reduction of carbon dioxide, nitrite and the competing proton reduction: effect of 2 nd sphere interactions in catalysis
S Amanullah, P Saha, A Nayek, ME Ahmed, A Dey
Chemical Society Reviews 50 (6), 3755-3823, 2021
1122021
Oxygen-Tolerant H2 Production by [FeFe]-H2ase Active Site Mimics Aided by Second Sphere Proton Shuttle
ME Ahmed, S Dey, MY Darensbourg, A Dey
Journal of the American Chemical Society 140 (39), 12457-12468, 2018
792018
Activation of Co(I) State in a Cobalt-Dithiolato Catalyst for Selective and Efficient CO2 Reduction to CO
S Dey, ME Ahmed, A Dey
Inorganic Chemistry 57 (10), 5939-5947, 2018
672018
H 2 evolution catalyzed by a FeFe-hydrogenase synthetic model covalently attached to graphite surfaces
ME Ahmed, S Dey, B Mondal, A Dey
Chemical Communications 53 (58), 8188-8191, 2017
582017
Repurposing a Bio-Inspired NiFe Hydrogenase Model for CO2 Reduction with Selective Production of Methane as the Unique C-Based Product
ME Ahmed, S Adam, D Saha, J Fize, V Artero, A Dey, C Duboc
ACS Energy Letters 5 (12), 3837-3842, 2020
572020
A Bidirectional Bioinspired [FeFe]-Hydrogenase Model
ME Ahmed, A Nayek, A Križan, N Coutard, A Morozan, S Ghosh Dey, ...
Journal of the American Chemical Society 144 (8), 3614-3625, 2022
532022
Recent developments in bioinspired modelling of [NiFe]-and [FeFe]-hydrogenases
ME Ahmed, A Dey
Current Opinion in Electrochemistry 15, 155-164, 2019
502019
Hydrogen Evolution from Aqueous Solutions Mediated by a Heterogenized [NiFe]‐Hydrogenase Model: Low pH Enables Catalysis through an Enzyme‐Relevant Mechanism
ME Ahmed, S Chattopadhyay, L Wang, D Brazzolotto, D Pramanik, ...
Angewandte Chemie International Edition 57 (49), 16001-16004, 2018
492018
Electrocatalytic ammonia oxidation by a low-coordinate copper complex
ME Ahmed, M Raghibi Boroujeni, P Ghosh, C Greene, S Kundu, ...
Journal of the American Chemical Society 144 (46), 21136-21145, 2022
482022
Homogeneous Electrochemical Reduction of CO2 to CO by a Cobalt Pyridine Thiolate Complex
ME Ahmed, A Rana, R Saha, S Dey, A Dey
Inorganic Chemistry 59 (8), 5292-5302, 2020
462020
An [FeFe]‐Hydrogenase Mimic Immobilized through Simple Physiadsorption and Active for Aqueous H2 Production
ME Ahmed, D Saha, L Wang, M Gennari, S Ghosh Dey, V Artero, A Dey, ...
ChemElectroChem 8 (9), 1674-1677, 2021
142021
Atmospheric-Water-Induced Reversible Structural Transformation of a Two-Dimensional Ni (II)-Based Ferromagnetic MOF: A Highly Efficient Water Oxidation Electrocatalyst and …
S Karim, A Adhikary, ME Ahmed, D Samanta, D Das
ACS Sustainable Chemistry & Engineering 10 (50), 16657-16669, 2022
122022
Thiol and H2S Mediated NO Generation from Nitrate at Copper (II)
P Ghosh, M Stauffer, ME Ahmed, J Bertke, R Staples, T Warren
Journal of the American Chemical Society 145 (22), 12007–12012, 2023
102023
Bioinorganic Chemistry on Electrodes: Methods to Functional Modeling
A Nayek, ME Ahmed, S Samanta, S Dinda, S Patra, S Ghosh Dey, A Dey
Journal of the American Chemical Society, 2022
102022
Amplifying Reactivity of Bio‐Inspired [FeFe]‐Hydrogenase Mimics by Organic Nanotubes
ME Ahmed, P Das, SM Ahamed, S Chattopadhyay, A Nayek, M Mondal, ...
Chemistry–A European Journal 30 (68), e202403011, 2024
12024
Oxygen reduction reaction in enzymatic biofuel cells
ME Ahmed, S Chattopadhyay, S Chatterjee, K Sengupta
Elsevier, 2022
12022
Hydrogen Oxidation by Bioinspired Models of [FeFe]-Hydrogenase
A Nayek, RK Poria, ME Ahmed, S Patra, SG Dey, A Dey
ACS Organic & Inorganic Au, 2024
2024
Electrocatalytic Ammonia Oxidation by Pyridyl Substituted Ferrocenes
ME Ahmed, R Staples, T Cundari, T Warren
2024
Synthesis spectroscopy and catalytic studies of bio inspired models of matalloenzymes involved in low valent transformation
ME Ahmed
Kolkata, 0
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