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Per E M Siegbahn

Showing results (31-40 of 176) with videos related to

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The Journal of Physical Chemistry. B|December 18, 2024
Nitrification Mechanisms for the P460 EnzymesPer E M Siegbahn
The Journal of Physical Chemistry. B|February 22, 2022
Energetics for CO<sub>2</sub> Reduction by Molybdenum-Containing Formate DehydrogenasePer E M Siegbahn
RSC Advances|April 15, 2022
A quantum chemical approach for the mechanisms of redox-active metalloenzymesPer E M Siegbahn
Current Opinion in Chemical Biology|June 1, 2002
Quantum chemical studies of manganese centers in biologyPer E M Siegbahn
Journal of the American Chemical Society|July 26, 2016
Model Calculations Suggest that the Central Carbon in the FeMo-Cofactor of Nitrogenase Becomes Protonated in the Process of Nitrogen FixationPer E M Siegbahn
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|June 9, 2004
The catalytic cycle of catechol oxidasePer E M Siegbahn
Accounts of Chemical Research|October 28, 2009
Structures and energetics for O2 formation in photosystem IIPer E M Siegbahn
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|July 11, 2006
The performance of hybrid DFT for mechanisms involving transition metal complexes in enzymesPer E M Siegbahn
The Journal of Physical Chemistry. B|March 2, 2023
How Protons Move in Enzymes─The Case of NitrogenasePer E M Siegbahn
Biochimica Et Biophysica Acta|October 30, 2012
Water oxidation mechanism in photosystem II, including oxidations, proton release pathways, O-O bond formation and O2 releasePer E M Siegbahn
Pageof 18

Showing results (31-40 of 176) with videos related to

Sort By:
Pageof 18
The Journal of Physical Chemistry. B|December 18, 2024
Nitrification Mechanisms for the P460 EnzymesPer E M Siegbahn
The Journal of Physical Chemistry. B|February 22, 2022
Energetics for CO<sub>2</sub> Reduction by Molybdenum-Containing Formate DehydrogenasePer E M Siegbahn
RSC Advances|April 15, 2022
A quantum chemical approach for the mechanisms of redox-active metalloenzymesPer E M Siegbahn
Current Opinion in Chemical Biology|June 1, 2002
Quantum chemical studies of manganese centers in biologyPer E M Siegbahn
Journal of the American Chemical Society|July 26, 2016
Model Calculations Suggest that the Central Carbon in the FeMo-Cofactor of Nitrogenase Becomes Protonated in the Process of Nitrogen FixationPer E M Siegbahn
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|June 9, 2004
The catalytic cycle of catechol oxidasePer E M Siegbahn
Accounts of Chemical Research|October 28, 2009
Structures and energetics for O2 formation in photosystem IIPer E M Siegbahn
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|July 11, 2006
The performance of hybrid DFT for mechanisms involving transition metal complexes in enzymesPer E M Siegbahn
The Journal of Physical Chemistry. B|March 2, 2023
How Protons Move in Enzymes─The Case of NitrogenasePer E M Siegbahn
Biochimica Et Biophysica Acta|October 30, 2012
Water oxidation mechanism in photosystem II, including oxidations, proton release pathways, O-O bond formation and O2 releasePer E M Siegbahn
Pageof 18