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首页> 外文期刊>Angewandte Chemie >Water Oxidation by Ruthenium Complexes Incorporating Multifunctional Bipyridyl Diphosphonate Ligands
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Water Oxidation by Ruthenium Complexes Incorporating Multifunctional Bipyridyl Diphosphonate Ligands

机译:钌配合物与多功能联吡啶二膦酸酯配体的水氧化。

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摘要

We describe herein the synthesis and characterization of ruthenium complexes with multifunctional bipyridyl diphosphonate ligands as well as initial water oxidation studies. In these complexes, the phosphonate groups provide redox-potential leveling through charge compensation and sigma donation to allow facile access to high oxidation states. These complexes display unique pH-dependent electrochemistry associated with deprotonation of the phosphonic acid groups. The position of these groups allows them to shuttle protons in and out of the catalytic site and reduce activation barriers. A mechanism for water oxidation by these catalysts is proposed on the basis of experimental results and DFT calculations. The unprecedented attack of water at a neutral six-coordinate [Ru-IV] center to yield an anionic seven-coordinate [Ru-IV-OH](-) intermediate is one of the key steps of a single-site mechanism in which all species are anionic or neutral. These complexes are among the fastest single-site catalysts reported to date.
机译:我们在本文中描述了具有多功能联吡啶基二膦酸酯配体的钌配合物的合成和表征,以及初始水氧化研究。在这些络合物中,膦酸酯基团通过电荷补偿和sigma捐赠提供氧化还原电位的平衡,从而易于获得高氧化态。这些配合物显示出与膦酸基团去质子化有关的独特的pH依赖性电化学。这些基团的位置使它们能够将质子穿入和穿出催化部位并减少活化障碍。在实验结果和DFT计算的基础上,提出了利用这些催化剂进行水氧化的机理。水在中性六坐标[Ru-IV]中心发生空前的进攻以产生阴离子七坐标[Ru-IV-OH](-)中间体,这是单点机理的关键步骤之一,其中所有物质是阴离子或中性的。这些络合物是迄今为止报道的最快的单中心催化剂。

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