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Physical Chemistry Chemical Physics : PCCP|March 3, 2026
A Zundel ion in the catalytic proton transfer pathway of [FeFe]-hydrogenaseLingling Liu, Max A Klamke, Federica Arrigoni, et al.Chemsuschem|October 13, 2023
A Dynamic Water Channel Affects O<sub>2</sub> Stability in [FeFe]-HydrogenasesClaudia Brocks, Chandan K Das, Jifu Duan, et al.Journal of the American Chemical Society|April 23, 2025
Protein Dynamics Affect O<sub>2</sub>-Stability of Group B [FeFe]-Hydrogenase from <i>Thermosediminibacter oceani</i>Subhasri Ghosh, Chandan K Das, Sarmila Uddin, et al.ACS Catalysis|February 3, 2023
Increasing the O<sub>2</sub> Resistance of the [FeFe]-Hydrogenase CbA5H through Enhanced Protein FlexibilityAndreas Rutz, Chandan K Das, Andrea Fasano, et al.Proceedings of the National Academy of Sciences of the United States of America|July 25, 2019
The final steps of [FeFe]-hydrogenase maturationOliver Lampret, Julian Esselborn, Rieke Haas, et al.Physical Chemistry Chemical Physics : PCCP|September 9, 2017
Protonation/reduction dynamics at the [4Fe-4S] cluster of the hydrogen-forming cofactor in [FeFe]-hydrogenasesMoritz Senger, Stefan Mebs, Jifu Duan, et al.Journal of the American Chemical Society|March 4, 2020
Shedding Light on Proton and Electron Dynamics in [FeFe] HydrogenasesChristian Lorent, Sagie Katz, Jifu Duan, et al.Nano Letters|August 14, 2019
Artificial Photosynthesis with Electron Acceptor/Photosensitizer-Aptamer ConjugatesGuo-Feng Luo, Yonatan Biniuri, Wei-Hai Chen, et al.Inorganic Chemistry|November 5, 2014
Hydride binding to the active site of [FeFe]-hydrogenasePetko Chernev, Camilla Lambertz, Annika Brünje, et al.Analytical Chemistry|November 25, 2025
Reconsidering the Enzyme Kinetics of [FeFe]-Hydrogenases: Improved Turnover Rates and New Insights into pH and Potential Dependence with Eu(II)-Based Solution AssaysEda Sönmez, Nikolaos Kostopoulos, Mira Gamache, et al.Pageof 13