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Half-Sandwich Iridium Complexes for Homogeneous Water-Oxidation Catalysis

机译:半三明治铱配合物用于均相水氧化催化

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摘要

Iridium half-sandwich complexes of the types Cp~*lr(N-C)X, [Cp~*lr(N-N)X]X, and [Cplr(N-N)X]X are catalyst precursors for the homogeneous oxidation of water to dioxygen. Kinetic studies with cerium(IV) ammonium nitrate as primary oxidant show that oxygen evolution is rapid and continues over many hours. In addition, [Cp~*lr(H_2O)_3]SO_4 and [(Cp~*lr)_2(μ-OH)_3]OH can show even higher turnover frequencies (up to 20 min~(-1) at pH 0.89). Aqueous electrochemical studies on the cationic complexes having chelate ligands show catalytic oxidation at pH > 7; conversely, at low pH, there are no oxidation waves up to 1.5 V vs NHE for the complexes. H_2~(18)O isotope incorporation studies demonstrate that water is the source of oxygen atoms during cerium(IV)-driven catalysis. DFT calculations and kinetic experiments, including kinetic-isotope-effect studies, suggest a mechanism for homogeneous iridium-catalyzed water oxidation and contribute to the determination of the rate-determining step. The kinetic experiments also help distinguish the active homogeneous catalyst from heterogeneous nanoparticulate iridium dioxide.
机译:类型为Cp〜* lr(N-C)X,[Cp〜* lr(N-N)X] X和[Cplr(N-N)X] X的铱半三明治复合物是将水均匀氧化为双氧的催化剂前体。用硝酸铈(IV)铵作为主要氧化剂的动力学研究表明,氧气释放迅速并且持续了数小时。此外,[Cp〜* lr(H_2O)_3] SO_4和[(Cp〜* lr)_2(μ-OH)_3] OH在pH值为0.89时可以显示更高的转换频率(长达20分钟〜(-1)) )。对具有螯合配体的阳离子配合物的水电化学研究表明,在pH> 7时催化氧化;相反,在低pH值下,配合物相对于NHE而言,没有高达1.5 V的氧化波。 H_2〜(18)O同位素掺入研究表明,水是铈(IV)驱动催化过程中氧原子的来源。 DFT计算和动力学实验,包括动力学同位素效应研究,提出了均相铱催化水氧化的机制,并有助于确定速率确定步骤。动力学实验还有助于区分活性均相催化剂和异质纳米二氧化铱。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第45期|p.16017-16029|共13页
  • 作者单位

    Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States;

    Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States;

    Departament de Quimica, Universitat Autonoma de Barcelona, 08193 Bellaterra, Barcelona, Catalonia, Spain,Institut Charles Gerhardt, Universite Montpellier 2, CNRS 5253, cc 15001, Place Eugene Bataillon 34095, Montpellier, France;

    Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States;

    Department of Geology and Geophysics, Yale University, P.O. Box 208109, New Haven, Connecticut 06520, United States;

    Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States;

    Institut Charles Gerhardt, Universite Montpellier 2, CNRS 5253, cc 15001, Place Eugene Bataillon 34095, Montpellier, France;

    Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States;

    Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States;

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