Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters
The iron-molybdenum cofactor (FeMo cofactor) is the catalytic center of nitrogen fixation in molybdenum-dependent nitrognease enzymes. The resting state cofactor is a complex [MoFe7S9X] cluster, in which the central ligand X is a central hexacoordinated monoatomic light atom (2p), and the exact iden...
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ndltd-WATERLOO-oai-uwspace.uwaterloo.ca-10012-61892013-01-08T18:54:57ZZhang, Wei2011-08-30T19:53:10Z2011-08-30T19:53:10Z2011-08-30T19:53:10Z2011http://hdl.handle.net/10012/6189The iron-molybdenum cofactor (FeMo cofactor) is the catalytic center of nitrogen fixation in molybdenum-dependent nitrognease enzymes. The resting state cofactor is a complex [MoFe7S9X] cluster, in which the central ligand X is a central hexacoordinated monoatomic light atom (2p), and the exact identity of X is uncertain. The heteroligated, nitrogen-containing core environment of the cofactor cluster may also be relevant to active states, as several mechanistic proposals for cofactor catalysis incorporate substrate-derived nitrogenous moeities into the cluster core during turnover. To this end, we have explored synthetic pathways to the dinuclear and tetranuclear nitrogen-containing iron-sufur clusters, which may mimic the heteroligated core environment of the cofactor. Dinuclear iron-amide clusters Fe2(μ-NHtBu)2[N(SiMe3)2]2 (46) and Fe2(μ-NHtBu)2(μ-S)[N(SiMe3)2]2 (47) are useful precursors for the preparation of [Fe4(NtBu)n(S)4-nCl4]z cubane complexes that span all mixed imide/sulfide core compositions between the classic [Fe4S4] and the more recently reported [Fe4(NtBu)4] homoleptic motifs. The [Fe4NS3] core of the n = 1 cluster is particularly noteworthy in being essentially isometric with the analogous [Fe4S3X] subunit of the FeMo cofactor structure. Synthetic compounds are characterized by single crystal X-ray crystallography, cyclic voltammetry, and UV-Vis, 1H NMR spectroscopies.enIron-amide clustersIron-imide-sulfide clustersSynthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide ClustersThesis or DissertationChemistryMaster of ScienceChemistry |
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en |
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Iron-amide clusters Iron-imide-sulfide clusters Chemistry |
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Iron-amide clusters Iron-imide-sulfide clusters Chemistry Zhang, Wei Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters |
description |
The iron-molybdenum cofactor (FeMo cofactor) is the catalytic center of nitrogen fixation in molybdenum-dependent nitrognease enzymes. The resting state cofactor is a complex [MoFe7S9X] cluster, in which the central ligand X is a central hexacoordinated monoatomic light atom (2p), and the exact identity of X is uncertain. The heteroligated, nitrogen-containing core environment of the cofactor cluster may also be relevant to active states, as several mechanistic proposals for cofactor catalysis incorporate substrate-derived nitrogenous moeities into the cluster core during turnover. To this end, we have explored synthetic pathways to the dinuclear and tetranuclear nitrogen-containing iron-sufur clusters, which may mimic the heteroligated core environment of the cofactor. Dinuclear iron-amide clusters Fe2(μ-NHtBu)2[N(SiMe3)2]2 (46) and Fe2(μ-NHtBu)2(μ-S)[N(SiMe3)2]2 (47) are useful precursors for the preparation of [Fe4(NtBu)n(S)4-nCl4]z cubane complexes that span all mixed imide/sulfide core compositions between the classic [Fe4S4] and the more recently reported [Fe4(NtBu)4] homoleptic motifs. The [Fe4NS3] core of the n = 1 cluster is particularly noteworthy in being essentially isometric with the analogous [Fe4S3X] subunit of the FeMo cofactor structure. Synthetic compounds are characterized by single crystal X-ray crystallography, cyclic voltammetry, and UV-Vis, 1H NMR spectroscopies. |
author |
Zhang, Wei |
author_facet |
Zhang, Wei |
author_sort |
Zhang, Wei |
title |
Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters |
title_short |
Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters |
title_full |
Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters |
title_fullStr |
Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters |
title_full_unstemmed |
Synthesis and Characterization of Iron-Amide and Iron-Imide-Sulfide Clusters |
title_sort |
synthesis and characterization of iron-amide and iron-imide-sulfide clusters |
publishDate |
2011 |
url |
http://hdl.handle.net/10012/6189 |
work_keys_str_mv |
AT zhangwei synthesisandcharacterizationofironamideandironimidesulfideclusters |
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1716573843164758016 |