## Abstract A short overview of diiron dichalcogenolato (Se and Te) model complexes related to the chemistry of the diiron subsite of [FeFe] hydrogenase is presented. These model complexes allow direct comparison with the diiron dithiolato compound analogues for their ability to catalyze the format
Oxidation of Diiron and Triiron Sulfurdithiolato Complexes: Mimics for the Active Site of [FeFe]-Hydrogenase
✍ Scribed by Jochen Windhager; Raphael A. Seidel; Ulf-Peter Apfel; Helmar Görls; Gerald Linti; Wolfgang Weigand
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 523 KB
- Volume
- 5
- Category
- Article
- ISSN
- 1612-1872
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✦ Synopsis
Abstract
The oxidation of the hexacarbonyl(1,3‐dithiolato‐S,S′)diiron complexes 4a–4c with varying amounts of dimethyldioxirane (DMD) was systematically studied. The chemoselectivity of the oxidation products depended upon the substituent R (R=H, Me, 1/2 (CH~2~)~5~). For R=H, four oxidation products, 6a–6d, have been obtained. In the case of R=Me, three products, 7a–7c, were formed, and for R=1/2 (CH~2~)~5~, only complex 8 was observed. These observations are due to steric and electronic effects caused by the substituent R. Additionally, oxidation of the triiron complex 5 with DMD was performed to yield the products 9a and 9b. X‐Ray diffraction analyses were performed for 6a–6d, 7a, and 7c, as well as for 9a and 9b. The electronic properties were determined by density‐functional theory (DFT) calculations.
📜 SIMILAR VOLUMES
## Abstract Six‐membered heterocycles, 1,4‐dithiane and 1,4‐thioxane, were treated with [Fe~2~(CO)~6~(μ‐pdt)] (pdt = propanedithiolate) in order to synthesise [2Fe3S] complexes with well positioned heteroatoms as potential base. Monosubstituted compounds of general formula [Fe~2~(CO)~5~L(μ‐pdt)] (L