Björn Åkermark, Ph.D.

Organic Chemistry Stockholm University, Stockholm, Stockholms län, Sweden 
Artificial Photosynthesis
"Björn Åkermark"
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Das B, Rahaman A, Shatskiy A, et al. (2021) The Impact of Ligand Carboxylates on Electrocatalyzed Water Oxidation. Accounts of Chemical Research. 54: 3326-3337
Shatskiy A, Bardin A, Oschmann M, et al. (2019) Electrochemically-Driven Water Oxidation by a Highly Active Ruthenium-Based Catalyst. Chemsuschem
Shatskiy A, Kärkäs MD, Åkermark B. (2019) The Art of Splitting Water: Storing Energy in a Readily Available and Convenient Form European Journal of Inorganic Chemistry. 2019: 2020-2024
Kärkäs MD, Li YY, Siegbahn PEM, et al. (2018) Metal-Ligand Cooperation in Single-Site Ruthenium Water Oxidation Catalysts: A Combined Experimental and Quantum Chemical Approach. Inorganic Chemistry
Olsén P, Morvan J, Sawadjoon S, et al. (2018) Cyclic allylic carbonates as a renewable platform for protecting chemistry in water Green Chemistry. 20: 3186-3190
Olsén P, Oschmann M, Johnston EV, et al. (2018) Synthesis of highly functional carbamates through ring-opening of cyclic carbonates with unprotected α-amino acids in water Green Chemistry. 20: 469-475
Abdel‐Magied AF, Arafa WAA, Laine TM, et al. (2017) Substituent Effects in Molecular Ruthenium Water Oxidation Catalysts Based on Amide Ligands Chemcatchem. 9: 1583-1587
Abdel-Magied AF, Shatskiy A, Liao RZ, et al. (2016) Chemical and Photochemical Water Oxidation Mediated by an Efficient Single-Site Ruthenium Catalyst. Chemsuschem
Shatskiy A, Lomoth R, Abdel-Magied AF, et al. (2016) Catalyst-solvent interactions in a dinuclear Ru-based water oxidation catalyst. Dalton Transactions (Cambridge, England : 2003)
Das B, Lee BL, Karlsson EA, et al. (2016) Water oxidation catalyzed by molecular di- and nonanuclear Fe complexes: importance of a proper ligand framework. Dalton Transactions (Cambridge, England : 2003)
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