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Electrochemical and Kinetic Insights into Molecular Water Oxidation Catalysts Derived from Cp*Ir(pyridine‐alkoxide) Complexes

机译:Cp * Ir(吡啶-醇盐)配合物分子水氧化催化剂的电化学和动力学研究

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摘要

We report the solution‐phase electrochemistry of seven half‐sandwich iridium(III) complexes with varying pyridine‐alkoxide ligands to quantify electronic ligand effects that translate to their activity in catalytic water oxidation. Our results unify some previously reported electrochemical data of Cp*Ir complexes by showing how the solution speciation determines the electrochemical response: cationic complexes show over 1 V higher redox potentials that their neutral forms in a distinct demonstration of charge accumulation effects relevant to water oxidation. Building on previous work that analysed the activation behaviour of our pyalk‐ligated Cp*Ir complexes >1–>7, we assess their catalytic oxygen evolution activity with sodium periodate (NaIO4) and ceric ammonium nitrate (CAN) in water and aqueous tBuOH solution. Mechanistic studies including H/D kinetic isotope effects and reaction progress kinetic analysis (RPKA) of oxygen evolution point to a dimer‐monomer equilibrium of the IrIV resting state preceding a proton‐coupled electron transfer (PCET) in the turnover‐limiting step (TLS). Finally, true electrochemically driven water oxidation is demonstrated for all catalysts, revealing surprising trends in activity that do not correlate with those obtained using chemical oxidants.
机译:我们报告了七个具有吡啶醇盐配体的半三明治铱(III)配合物的溶液相电化学,以量化电子配体效应,这些效应转化为它们在催化水氧化中的活性。我们的结果通过显示溶液形态决定电化学反应的方法,统一了一些先前报道的Cp * Ir配合物的电化学数据:阳离子配合物显示出高于1 V的氧化还原电位,它们的中性形式清楚地证明了与水氧化有关的电荷积累效应。在以前的工作中分析了连接了pyalk的Cp * Ir配合物> 1 – > 7 的活化行为,我们评估了它们在高碘酸钠(NaIO4)和水和 t BuOH水溶液中的硝酸硝酸铵(CAN)。包括H / D动力学同位素效应和氧气析出的反应过程动力学分析(RPKA)在内的机理研究表明,质子偶联电子转移(PCET)之前Ir IV 静止状态的二聚体平衡在营业额限制步骤(TLS)中。最后,对所有催化剂都证明了真正的电化学驱动的水氧化,揭示了与使用化学氧化剂获得的活性不相关的令人惊讶的活性趋势。

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