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  4. Insights from 125Te and 57Fe nuclear resonance vibrational spectroscopy
 
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2019
  • Zeitschriftenaufsatz

Titel

Insights from 125Te and 57Fe nuclear resonance vibrational spectroscopy

Titel Supplements
A [4Fe-4Te] cluster from two points of view
Abstract
Iron-sulfur clusters are common building blocks for electron transport and active sites of metalloproteins. Their comprehensive investigation is crucial for understanding these enzymes, which play important roles in modern biomimetic catalysis and biotechnology applications. We address this issue by utilizing (Et4N)3[Fe4Te4(SPh)4], a tellurium modified version of a conventional reduced [4Fe-4S]+ cluster, and performed both 57Fe- and 125Te-NRVS to reveal its characteristic vibrational features. Our analysis exposed major differences in the resulting 57Fe spectrum profile as compared to that of the respective [4Fe-4S] cluster, and between the 57Fe and 125Te profiles. DFT calculations are applied to rationalize structural, electronic, vibrational, and redox-dependent properties of the [4Fe-4Te]+ core. We herein highlight the potential of sulfur/tellurium exchange as a method to isolate the iron-only motion in enzymatic systems.
Author(s)
Wittkamp, Florian
Ruhr-Universität Bochum
Mishra, Nakul
Department of Chemistry, University of California, Davis
Wang, Hongxin
Department of Chemistry, University of California, Davis
Wille, Hans-Christian
Deutsches Elektronen-Synchrotron DESY
Steinbrügge, Rene
Deutsches Elektronen-Synchrotron DESY
Kaupp, Martin
Institute of Chemistry, Theoretical Chemistry/Quantum Chemistry, Technical University of Berlin
Cramer, Stephen P.
Department of Chemistry, University of California, Davis
Apfel, Ulf-Peter
Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT
Pelmenschikov, Vladimir
Institute of Chemistry, Theoretical Chemistry/Quantum Chemistry, Technical University of Berlin
Zeitschrift
Chemical Science
DOI
10.1039/C9SC02025J
File(s)
N-549713.pdf (1.71 MB)
Language
Englisch
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Tags
  • spectroscopy

  • iron-sulfur cluster

  • enzymatic system

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