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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 >Series of mixed valent Fe(II)Fe(I) complexes that model the H-ox state of [FeFe]hydrogenase: Redox properties, density-functional theory investigation, and reactivities with extrinsic CO
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Series of mixed valent Fe(II)Fe(I) complexes that model the H-ox state of [FeFe]hydrogenase: Redox properties, density-functional theory investigation, and reactivities with extrinsic CO

机译:一系列模拟[FeFe]氢化酶H-ox状态的混合价Fe(II)Fe(I)配合物:氧化还原性质,密度泛函理论研究以及与外部CO的反应性

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A series of asymmetrically disubstituted models of the active site of [FeFe]-hydrogenase, (mu-pdt)[Fe(CO)(2)PMe3][Fe(CO)(2)NHC] (pdt = 1,3-propanedithiolate, NHC = IMes, 1,3-bis(2,4,6-trimethylphenyl)imidazol-2-ylidene IMes (1), IMesMe, 1-methyl,3-(2,4,6-trimethylphenyl)imidazol-2-ylidene (2) or IMe, 1,3-bis(methyl)imidazol-2-ylidene (3)), have been synthesized and characterized. The one-electron oxidation of these complexes to generate mixed valent models of the H-ox state of [FeFe]-hydrogenase, such as the previously reported (mu-pdt)(mu-CO)[Fe(CO)(2)PMe3][Fe(CO)IMes](+) (1(ox)) (Liu, T.; Darensbourg, M. Y. J. Am. Chem. Soc. 2007, 129, 7008-7009) has been examined to explore the steric and electronic effects of different N-atom substituents on the stability and structure of the mixed valent cations. The differences in spectroscopic properties, structures, and relative stabilities of 1(ox) (mu-pdt)[Fe(CO)(2)PMe3][Fe(CO)(2)IMesMe](+) (2(ox)), and (mu-pdt)[Fe(CO)(2)PMe3]-[Fe(CO)(2)IMe](+) (3(ox)) are discussed in the context of both experimental and theoretical data. Of the three derivatives, only that with greatest steric bulk on the NHC ligand, 1(ox), shows a clear indication of mu-CO by solution nu(CO) IR and yields to crystallization as a rotated form, commensurate with the two-Fe subsite of H-ox. In addition, the reactivity of the complexes with extrinsic CO to form CO adducts and/or exchange with (CO)-C-13 is explored by experiment and by using density-functional theory calculations.
机译:[FeFe]-加氢酶活性位点的一系列不对称双取代模型,(mu-pdt)[Fe(CO)(2)PMe3] [Fe(CO)(2)NHC](pdt = 1,3-丙二硫醇盐,NHC = IMes,1,3-双(2,4,6-三甲基苯基)咪唑-2-亚基IMes(1),IMesMe,1-甲基,3-(2,4,6-三甲基苯基)咪唑-2-合成并表征了亚叉基(2)或IMe 1,3-双(甲基)咪唑-2-亚叉基(3))。这些络合物的单电子氧化可生成[FeFe]-氢化酶H-ox状态的混合价模型,例如先前报道的(mu-pdt)(mu-CO)[Fe(CO)(2)PMe3 ] [Fe(CO)IMes](+)(1(ox))(Liu,T .; Darensbourg,MYJ Am.Chem.Soc。2007,129,7008-7009)已被研究以研究空间和电子效应N原子取代基对混合价阳离子的稳定性和结构的影响1(ox)(mu-pdt)[Fe(CO)(2)PMe3] [Fe(CO)(2)IMesMe](+)(2(ox))的光谱性质,结构和相对稳定性的差异,以及(mu-pdt)[Fe(CO)(2)PMe3]-[Fe(CO)(2)IMe](+)(3(ox))在实验和理论数据的背景下进行了讨论。在这三种衍生物中,只有在NHC配体上具有最大空间体积的那些衍生物1(ox)才能通过溶液nu(CO)IR清楚地显示出mu-CO,并以旋转形式产生结晶,与两种形式相当: H-ox的铁亚位。另外,通过实验和使用密度泛函理论计算,探索了该复合物与外部CO形成CO加合物和/或与(CO)-C-13交换的反应性。

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