Atanu Rana, grad student

Affiliations: 
Inorganic Chemistry Indian Association for the Cultivation of Science 
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"Atanu Rana"
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Nayek A, Dey S, Patra S, et al. (2024) Facile electrocatalytic proton reduction by a [Fe-Fe]-hydrogenase bio-inspired synthetic model bearing a terminal CN ligand. Chemical Science. 15: 2167-2180
Wandzilak A, Grubel K, Skubi KL, et al. (2023) Mössbauer and Nuclear Resonance Vibrational Spectroscopy Studies of Iron Species Involved in N-N Bond Cleavage. Inorganic Chemistry
Bhunia S, Ghatak A, Rana A, et al. (2023) Amine Groups in the Second Sphere of Iron Porphyrins Allow for Higher and Selective 4e/4H Oxygen Reduction Rates at Lower Overpotentials. Journal of the American Chemical Society
Bhunia S, Rana A, Hematian S, et al. (2021) Proton Relay in Iron Porphyrins for Hydrogen Evolution Reaction. Inorganic Chemistry
Bhunia S, Rana A, Dey SG, et al. (2020) A designed second-sphere hydrogen-bond interaction that critically influences the O-O bond activation for heterolytic cleavage in ferric iron-porphyrin complexes. Chemical Science. 11: 2681-2695
Mondal B, Chattopadhyay S, Dey S, et al. (2020) Elucidation of Factors That Govern the 2e/2H vs 4e/4H Selectivity of Water Oxidation by a Cobalt Corrole. Journal of the American Chemical Society
Das PK, Bhunia S, Chakraborty P, et al. (2020) Electrocatalytic Water Oxidation by a Phosphorus-Nitrogen O═PN-Pincer Cobalt Complex. Inorganic Chemistry
Ahmed ME, Rana A, Saha R, et al. (2020) Homogeneous Electrochemical Reduction of CO to CO by a Cobalt Pyridine Thiolate Complex. Inorganic Chemistry
Bhunia S, Rana A, Dey SG, et al. (2020) A designed second-sphere hydrogen-bond interaction that critically influences the O–O bond activation for heterolytic cleavage in ferric iron–porphyrin complexes Chemical Science. 11: 2681-2695
de Visser S, Pattanayak S, Cantu Reinhard F, et al. (2019) The equatorial ligand effect on the properties and reactivity of iron(V)-oxo intermediates. Chemistry (Weinheim An Der Bergstrasse, Germany)
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