首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Restricted rotation of an Fe(CO)(2)(PL3)-subunit in [FeFe]-hydrogenase active site mimics by intramolecular ligation
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Restricted rotation of an Fe(CO)(2)(PL3)-subunit in [FeFe]-hydrogenase active site mimics by intramolecular ligation

机译:通过分子内结扎将Fe(CO)(2)(2)(2)(2)(PL3)(PL3)-subit的限制旋转

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摘要

A new series of homodinuclear iron complexes as models of the [FeFe]-hydrogenase active site was prepared and characterized. The complexes of the general formula [Fe-2(mcbdt)(CO)(5)PPh2R] (mcbdt = benzene-1,2-dithiol-3-carboxylic acid) feature covalent tethers that link the mcbdt ligand with the phosphine ligands which are terminally coordinated to one of the Fe centres. The synthetic feasability of the concept is demonstrated with the preparation of three novel complexes. A detailed theoretical investigation showes that by introducing a rigid covalent link between the phosphine and the bridging dithiolate ligands, the rotation of the Fe(CO)(2)P unit is hindered and higher rotation barriers were calculated compared to non-linked reference complexes. The concept of restricting Fe(L)(3) rotation is an approach to kinetically stabilize terminal hydrides which are reactive intermediates in catalytic proton reduction cycles of the enzymes.
机译:制备了一种新的一系列均匀核铁复合物作为[FeFE] - 氢酶活性位点的模型和表征。 通式[Fe-2(MCBDT)(CO)(5)PPH2R](MCBDT =苯-1,2-二硫醇-3-羧酸)的复合物具有与膦配体将MCBDT配体链接的共价系苯乙串 是终端协调为FE中心。 通过制备三种新络合物,证明了该概念的合成可行性。 一种详细的理论上研究表明,通过在膦和桥接金属酸盐配体之间引入刚性共价连接,与非连接的参考络合物相比,计算Fe(CO)(2)(2)P单元的旋转,并计算较高的旋转屏障。 限制Fe(L)(3)旋转的概念是一种方法稳定末端氢化物,其是酶催化质子还原循环中的反应性中间体。

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