首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >A Dinuclear Ruthenium-Based Water Oxidation Catalyst: Use of Non-Innocent Ligand Frameworks for Promoting Multi-Electron Reactions
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A Dinuclear Ruthenium-Based Water Oxidation Catalyst: Use of Non-Innocent Ligand Frameworks for Promoting Multi-Electron Reactions

机译:一种基于双核钌的水氧化催化剂:使用非纯配体骨架促进多电子反应

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摘要

Insight into how H2O is oxidized to O2 is envisioned to facilitate the rational design of artificial water oxidation catalysts, which is a vital component in solar-to-fuel conversion schemes. Herein, we report on the mechanistic features associated with a dinuclear Ru-based water oxidation catalyst. The catalytic action of the designed Ru complex was studied by the combined use of high-resolution mass spectrometry, electrochemistry, and quantum chemical calculations. Based on the obtained results, it is suggested that the designed ligand scaffold in Ru complex >1 has a non-innocent behavior, in which metal–ligand cooperation is an important part during the four-electron oxidation of H2O. This feature is vital for the observed catalytic efficiency and highlights that the preparation of catalysts housing non-innocent molecular frameworks could be a general strategy for accessing efficient catalysts for activation of H2O.
机译:可以预见到如何将H2O氧化为O2,以促进合理设计人造水氧化催化剂,这在太阳能转化为燃料的方案中至关重要。在本文中,我们报道了与双核Ru基水氧化催化剂有关的机理特征。通过结合使用高分辨率质谱,电化学和量子化学计算研究了设计的Ru配合物的催化作用。根据所得结果,建议设计的Ru配合物> 1 中的配体支架具有非纯正的行为,其中金属-配体配合是H 2 O四电子氧化过程中的重要部分。 。该特征对于观察到的催化效率至关重要,并突出表明容纳无害分子框架的催化剂的制备可能是获得用于活化H2O的有效催化剂的一般策略。

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