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Electrochemical Proton Reductions Catalyzed by the Simpler Hexacoordinate Iron Compounds as Functional Mimics of the Active Site in [FeFe] Hydrogenase

机译:通过更简单的六横聊碳化合物催化的电化学质子减少作为[FeFE]氢酶中活性位点的功能模拟物

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Ligand-substitution reaction of [(mu-S2C4N2H2)Fe-2(CO)(6)] (1) generated a normal mono-substituted diiron dithiolate derivative [(mu-S2C4N2H2)Fe-2(CO)(5)(PMe3)] (1P) and a simpler hexacoordinate mononuclear compound [(mu-S2C4N2H2)Fe([CO)(2)(PMe3)(2)] (2) via distinct reactivity pathways under identical conditions. 1P and 2 could act as the electrochemically functional mimics of the [2Fe] sub-cluster and the distal Fe moiety of the active site of [FeFe] hydrogenase. The electrochemical investigations showed that 2 catalyzed the production of hydrogen from weak acid (acetic acid, HOAc) via two catalytic processes with an initial metal-orbital based reduction. In contrast, the electrocatalytic reaction of 2 with stronger acid (trifluoroacetic acid, TFA) occurred via an initial ligand protonation, and proceeded through different pathways that involved distinct oxidation states of the catalyst. The most striking result obtained in this study was that the hydrogen formation by 2 from TFA occurred at a relatively low overpotential as small as -0.28 V. It could be rationalized by the exclusive employment of iron(II) and iron(I) redox levels in the catalytic cycle, which was consistent with the enzymatic process. The observations might shed light on some aspects of ways by which the model compounds catalyzed the reduction of protons.
机译:[(MU-S2C4N2H2)Fe-2(CO)(6)](1)产生的配体 - 取代反应产生正常的单取代的二硫酸二硫酸盐衍生物[(MU-S2C4N2H2)Fe-2(CO)(5)(PME3 )](1P)和一种通过在相同条件下的不同反应性途径的不同反应性途径的简单六曲调单核化合物[(MU-S2C4N2H2)Fe([Co)(2)(2)(2)](2)。图1P和2可以充当[2FE]亚簇的[2FE]亚簇的电化学功能模拟物和氢氢酶的活性位点的远端Fe部分。电化学研究表明,2催化了通过两种催化过程从弱酸(乙酸,HOAC)产生氢的产生,其具有初始金属轨道基于基于轨道的还原。相反,通过初始配体质子化发生较强的酸(三氟乙酸,TFA)的电催化反应,并通过涉及催化剂的明显氧化状态的不同途径进行。本研究中获得的最引人注目的结果是,从TFA的氢形成在相对较低的过电位中发生,只有-0.28V。它可以通过铁(II)和铁(I)氧化还原水平的独占使用合理的在催化循环中,与酶法一致。观察结果可能会在模型化合物催化质子的减少的方式的某些方面阐明。

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