1 results match your criteria: "Institute for Chemistry and Theoretical Chemistry[Affiliation]"
J Chem Theory Comput
January 2016
Technical University of Berlin , Institute for Chemistry and Theoretical Chemistry, Sekr. C7, Strasse des 17. Juni 135, 10623 Berlin, Germany.
An unprecedented [4Fe-3S] cluster proximal to the regular [NiFe] active site has recently been found to be responsible for the ability of membrane-bound hydrogenases (MBHs) to oxidize dihydrogen in the presence of ambient levels of oxygen. Starting from proximal cluster models of a recent DFT study on the redox-dependent structural transformation of the [4Fe-3S] cluster, (57)Fe Mössbauer parameters (electric field gradients, isomer shifts, and nuclear hyperfine couplings) were calculated using DFT. Our results revise the previously reported correspondence of Mössbauer signals and iron centers in the [4Fe-3S](3+) reduced-state proximal cluster.
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