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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(II) carboxylate complexes based on a tetraimidazole ligand as models of the photosynthetic non-heme ferrous sites: Synthesis, crystal structure, and Mossbauer and magnetic studies
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Iron(II) carboxylate complexes based on a tetraimidazole ligand as models of the photosynthetic non-heme ferrous sites: Synthesis, crystal structure, and Mossbauer and magnetic studies

机译:基于四咪唑配体的羧酸铁(II)配合物,作为光合非血红素亚铁位点的模型:合成,晶体结构以及Mossbauer和磁性研究

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摘要

The preparations, X-ray structures, and detailed physical characterization are presented for new complexes involving an iron(II) center, a tetraimidazole ligand (TIM), and different carboxylates. [Fe(TIM)(C6H5CH2CO2)](ClO4) (1) Crystallizes in the Pbca space group with a = 10.8947(13), b = 20.343(2), and c = 22.833(3) Angstrom, Z = 8, and V = 5060.6(11) Angstrom(3). [Fe(TIM)(CH3CO2)](ClO4) (2) crystallizes in the la space group with a = 17.117(2), b = 10.3358(12), and c = 25.658(3) Angstrom, beta = 90.301(13)degrees, Z = 8, and V = 4539.5(9) Angstrom(3). In both structures, the iron(II) is hexacoordinated to the four N-imidazole donors of the TIM ligand and the two O donors of a bidentate carboxylate. The flexibility of the carboxylate bidentate coordination, symmetrical or more or less asymmetrical, associated with the steric demand of the TIM ligand results in a remarkable versatility of the (FeN4O2)-N-II coordination geometry. The diversity in carboxylate bidentate coordination modes has allowed us to clearly show the importance of the structural and electronic effects, through IR and Mossbauer spectroscopy, of this apparently tenuous carboxylate shift. Comparison of the structural and Mossbauer properties of these complexes with the non-heme ferrous site of photosynthetic systems (i) shows that the metric parameters of site 2b, including the symmetrically chelated bidentate carboxylate, are closer to those of the non-heme ferrous site in the bacterial reaction centers of Rhodopseudomonas viridis and R. sphaeroides and (ii) suggests that the ligand environment of the non-heme ferrous center of PS 2 is close to the axially distorted octahedral symmetry resulting from an asymmetrical bidentate coordination of the -CO2 motif, as in complex 1. [References: 60]
机译:介绍了涉及铁(II)中心,四咪唑配体(TIM)和不同羧酸盐的新配合物的制备,X射线结构和详细的物理表征。 [Fe(TIM)(C6H5CH2CO2)](ClO4)(1)在Pbca空间群中结晶,其a = 10.8947(13),b = 20.343(2)和c = 22.833(3)埃,Z = 8和V = 5060.6(11)埃(3)。 [Fe(TIM)(CH3CO2)](ClO4)(2)在la空间群中结晶,a = 17.117(2),b = 10.3358(12),c = 25.658(3)埃,β= 90.301(13) Z = 8,V = 4539.5(9)埃(3)。在这两种结构中,铁(II)与TIM配体的四个N-咪唑供体和双齿羧酸盐的两个O供体六配位。与TIM配位体的空间需求相关的对称或几乎不对称的羧酸双齿配位的柔韧性导致(FeN4O2)-N-II配位几何结构具有显着的多功能性。羧酸二齿配位体配位模式的多样性使我们能够通过IR和Mossbauer光谱清楚地表明这种明显的羧酸酯位移对结构和电子效应的重要性。这些配合物与光合系统非血红素亚铁位点的配合物的结构和Mossbauer性质的比较(i)显示,位点2b的度量参数(包括对称螯合的双齿羧酸盐)更接近于非血红素亚铁位点在Rhodopseudomonas viridis和R. sphaeroides的细菌反应中心中,(ii)表明PS 2的非血红素亚铁中心的配体环境接近于-CO2基序的不对称双齿配位导致的轴向扭曲的八面体对称。 ,如复数1。[参考:60]

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