首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Iron-amide-sulfide and iron-imide-sulfide clusters: Heteroligated core environments relevant to the nitrogenase femo cofactor
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Iron-amide-sulfide and iron-imide-sulfide clusters: Heteroligated core environments relevant to the nitrogenase femo cofactor

机译:酰胺铁硫化物和酰亚胺铁硫化物簇:与固氮酶女性辅因子有关的异核核心环境

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摘要

Heteroligated cluster cores consisting of weak-field iron, strongly basic nitrogen anions, and sulfide are of interest with respect to observed and conjectured environments in the FeMo cofactor of nitrogenase. Selective syntheses have been developed to achieve such environments with tert-butyl-substituted amide and imide core ligands. A number of different routes were employed, including nominal ligand substitution and oxidative addition reactions, as well as novel transformations involving the combination of different cluster precursors. New cluster products include precursor Fe _2(μ-NH~tBu)_2[N(SiMe_3) _2]_2 (6), Fe_2(μ-NH~tBu) _2(μ-S)[N(SiMe_3)_2]_2 (7), which has a rare confacial bitetrahedral geometry previously unknown in iron chemistry, [Fe_2(μ-N~tBu)(μ-S)Cl_4]~(2-) (2), and cuboidal [Fe_4(μ_3-N~tBu) _3(μ_3-S)Cl_4]~- (8), [Fe _4(μ_3-N~tBu)_2(μ_3-S) _2Cl_4]~(2-) (9), and [Fe_4(μ _3-N~tBu)(μ_3-S)_3Cl _4]~(2-) (10), as well as selenide-substituted derivatives Fe2(μ-NHtBu)2(μ-Se)[N(SiMe 3)2]2 (7-Se) and [Fe4(μ 3-NtBu)(μ3-Se)3Cl 4]2- (10-Se). The imide-sulfide clusters complete the compositional sets [Fe_2(μ-N~tBu)_n(μ-S) _(2-n)Cl_4]~(2-) (n = 0-2) and [Fe_4(μ _3-N~tBu)_n(μ_3-S) _(4-n)Cl_4]~z (n = 0-4), represented previously only by the all-imide and all-sulfide core congeners, and they share chemical and physical properties with the parent homoleptic core species. All imide-sulfide cores are compositionally stable and show no evidence of core ligand exchange over days in solution. Beyond structural differences, the impact of mixed core ligation is most evident in redox potentials, which show progressive decreases of -435 (for z = 1-/2-) or -385 mV (for z = 2-/3-) for each replacement of sulfide by the more potent imide donor, and a corresponding effect may be expected for the interstitial heteroligand in the FeMo cofactor. Cluster 10 presents an [Fe_4NS_3] core framework virtually isometric with the isostructural [Fe_4S_3X] subunit of the FeMo cofactor, thus providing a synthetic structural representation for this portion of the cofactor core.
机译:对于在固氮酶的FeMo辅因子中观察到和推测的环境,由弱场铁,强碱性氮阴离子和硫化物组成的杂化簇状核是令人关注的。已经开发出选择性合成以使用叔丁基取代的酰胺和酰亚胺核心配体实现这种环境。采用了许多不同的途径,包括名义上的配体取代和氧化加成反应,以及涉及不同簇前体组合的新型转化。新的簇产品包括前体Fe _2(μ-NH〜tBu)_2 [N(SiMe_3)_2] _2(6),Fe_2(μ-NH〜tBu)_2(μ-S)[N(SiMe_3)_2] _2( 7),它具有罕见的界面铁酸四面体几何形状,以前在铁化学中是未知的,[Fe_2(μ-N〜tBu)(μ-S)Cl_4]〜(2-)(2)和长方体[Fe_4(μ_3-N〜 tBu)_3(μ_3-S)Cl_4]〜-(8),[Fe _4(μ_3-N〜tBu)_2(μ_3-S)_2Cl_4]〜(2-)(9)和[Fe_4(μ_3- N〜tBu)(μ_3-S)_3Cl _4]〜(2-)(10)以及硒化物取代的衍生物Fe2(μ-NHtBu)2(μ-Se)[N(SiMe 3)2] 2( 7-Se)和[Fe4(μ3-NtBu)(μ3-Se)3Cl 4] 2-(10-Se)。酰亚胺-硫化物簇完成了[Fe_2(μ-N〜tBu)_n(μ-S)_(2-n)Cl_4]〜(2-)(n = 0-2)和[Fe_4(μ_3) -N〜tBu)_n(μ_3-S)_(4-n)Cl_4]〜z(n = 0-4),以前仅由全酰亚胺和全硫化物核心同类物表示,它们共享化学和物理作用性与母体同型核心种。所有酰亚胺-硫化物核在组成上均稳定,并且在溶液中几天内没有显示核配体交换的迹象。除了结构差异外,混合核心连接的影响在氧化还原电势中最为明显,它显示出-435(对于z = 1- / 2-)或-385 mV(对于z = 2- / 3-)逐渐降低用更有效的酰亚胺供体取代硫化物,并预期FeMo辅因子中的间隙杂配体具有相应的作用。簇10提出了一个[Fe_4NS_3]核心框架,与FeMo辅因子的同构[Fe_4S_3X]亚基几乎等距,从而为辅因子核心的这一部分提供了合成的结构表示。

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