Protonation and Proton-Coupled Electron Transfer at S-Ligated [4Fe-4S] Clusters.
Biological [Fe-S] clusters are increasingly recognized to undergo proton-coupled electron transfer (PCET), but the site of protonation, mechanism, and role for PCET remains largely unknown. Here we explore this reactivity with synthetic model clusters. Protonation of the arylthiolate-ligated [4Fe-4S] cluster [Fe4 S4 (SAr)4 ](2-) (1, SAr=S-2,4-6-(iPr)3 C6 H2 ) leads to thiol dissociation, reversibly forming [Fe4 S4 (SAr)3 L](1-) (2) and ArSH (L=solvent, and/or conjugate base). Solutions of 2+ArSH react with the nitroxyl radical TEMPO to give [Fe4 S4 (SAr)4 ](1-) (1ox ) and TEMPOH. This reaction involves PCET coupled to thiolate association and may proceed via the unobserved protonated cluster [Fe4 S4 (SAr)3 (HSAr)](1-) (1-H). Similar reactions with this and related clusters proceed comparably. An understanding of the PCET thermochemistry of this cluster system has been developed, encompassing three different redox levels and two protonation states.
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Related Subject Headings
- Protons
- Proton Magnetic Resonance Spectroscopy
- Nitrogen Oxides
- Iron-Sulfur Proteins
- Iron
- General Chemistry
- Electrons
- Electron Transport
- Biological Phenomena
- 34 Chemical sciences
Citation
Published In
DOI
EISSN
ISSN
Publication Date
Volume
Issue
Start / End Page
Related Subject Headings
- Protons
- Proton Magnetic Resonance Spectroscopy
- Nitrogen Oxides
- Iron-Sulfur Proteins
- Iron
- General Chemistry
- Electrons
- Electron Transport
- Biological Phenomena
- 34 Chemical sciences