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Ultrafast photodriven intramolecular electron transfer from an iridium-based water-oxidation catalyst to perylene diimide derivatives

机译:从铱基水氧化催化剂到per二酰亚胺衍生物的超快光驱动分子内电子转移

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摘要

Photodriving the activity of water-oxidation catalysts is a critical step toward generating fuel from sunlight. The design of a system with optimal energetics and kinetics requires a mechanistic understanding of the single-electron transfer events in catalyst activation. To this end, we report here the synthesis and photophysical characterization of two covalently bound chromophore-catalyst electron transfer dyads, in which the dyes are derivatives of the strong photooxidant perylene-3,4:9,10-bis(dicarboximide) (PDI) and the molecular catalyst is the CpIr(ppy)Cl metal complex, where ppy = 2-phenylpyridine. Photoexcitation of the PDI in each dyad results in reduction of the chromophore to PDI•- in less than 10 ps, a process that outcompetes any generation of 3∗PDI by spin-orbit-induced intersystem crossing. Biexponential charge recombination largely to the PDI-Ir(III) ground state is suggestive of multiple populations of the PDI•--Ir(IV) ion-pair, whose relative abundance varies with solvent polarity. Electrochemical studies of the dyads show strong irreversible oxidation current similar to that seen for model catalysts, indicating that the catalytic integrity of the metal complex is maintained upon attachment to the high molecular weight photosensitizer.
机译:光驱动水氧化催化剂的活性是从阳光中产生燃料的关键步骤。具有最佳能量和动力学的系统的设计需要对催化剂活化中单电子转移事件的机械理解。为此,我们在这里报告了两种共价键合的发色团-催化剂电子转移二元化合物的合成和光物理性质,其中染料是强光氧化剂per-3,4:9,10-双(二甲叉酰亚胺)(PDI)的衍生物分子催化剂是Cp Ir(ppy)Cl金属络合物,其中ppy = 2-苯基吡啶。每个二倍体中PDI的光激发导致发色团减少到PDI •-小于10ps,该过程胜过任何自旋产生的 3 ∗ PDI轨道引起的系统间穿越。双指数电荷复合到PDI-Ir(III)的基态主要表明PDI •- -Ir(IV)离子对的多个种群,其相对丰度随溶剂极性而变化。对二元化合物的电化学研究显示出与模型催化剂相似的强不可逆氧化电流,表明在与高分子量光敏剂连接后,金属配合物的催化完整性得以保持。

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