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A mononuclear iron carbonyl complex [Fe(mu-bdt) (CO)(2)(PTA)(2)] with bulky phosphine ligands: a model for the [FeFe] hydrogenase enzyme active site with an inverted redox potential

机译:具有大的膦配体的单核羰基铁羰基络合物[Fe(mu-bdt)(CO)(2)(PTA)(2)]:具有反向氧化还原电位的[FeFe]氢化酶活性位点的模型

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摘要

A mononuclear hexa-coordinated iron carbonyl complex [Fe(mu-bdt)(CO)(2)(PTA)(2)](1) (bdt = 1,2-benzenedithiolate; PTA = 1,3,5-triaza-7-phosphaadamantane) with two bulky phosphine ligands in the trans position was synthesized and characterized by X-ray structural analysis coulometry data, FTIR, electrochemistry and electronic structure calculations. The complex undergoes a facilitated two-electron reduction 1/1(2-) and shows an inverted one-electron reduction for 1/1(-) at higher potentials. Electrochemical investigations of 1 are compared to the closely related [Fe(bdt)(CO)(2)(PMe3)(2)] compound. A mechanistic suggestion for the hydrogen evolution reaction upon proton reduction from acid media is derived. The stability of 1 in both weak and strong acids is monitored by cyclic voltammetry.
机译:单核六配位羰基铁络合物[Fe(mu-bdt)(CO)(2)(PTA)(2)](1)(bdt = 1,2-苯二硫代磺酸盐; PTA = 1,3,5-三氮杂-合成了具有两个大的膦配体的反式位置的7-磷金刚烷),并通过X射线结构分析库仑数据,FTIR,电化学和电子结构计算进行了表征。该配合物经历了促进的两电子还原1/1(2-),并且在较高的电势下显示了针对1/1(-)的反向一电子还原。将1的电化学研究与密切相关的[Fe(bdt)(CO)(2)(PMe3)(2)]化合物进行比较。提出了从酸性介质还原质子时氢释放反应的机理建议。通过循环伏安法监测1在弱酸和强酸中的稳定性。

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