Mechanisms of Photoisomerization and Water Oxidation Catalysis of Ruthenium(II) Aquo Complexes

Yuta Tsubonouchi, Eman A. Mohamed, Zaki N. Zahran, M. Yagi
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Abstract

Polypyridyl ruthenium(II) complexes have been widely researched as promising functional molecules. We have found unique photoisomerization reactions of polypyridyl ruthenium(II) aquo complexes. Recently we have attempted to provide insight into the mechanism of the photoisomerization of the complexes and distinguish between the distal−/proximal-isomers in their physicochemical properties and functions. Moreover, polypyridyl ruthenium(II) aquo complexes have been intensively studied as active water oxidation catalysts (WOCs) which are indispensable for artificial photosynthesis. The catalytic aspect and mechanism of water oxidation by the distal-/proximal-isomers of polypyridyl ruthenium(II) aquo complexes have been investigated to provide the guided thought to develop more efficient molecular catalysts for water oxidation. The recent progress on the photoisomerization and water oxidation of polypyridyl ruthenium(II) aquo complexes in our group are reviewed to understand the properties and functions of ruthenium complexes.
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钌(II)水基配合物的光异构化和水氧化催化机理
聚吡啶钌(II)配合物作为一种很有前途的功能分子得到了广泛的研究。我们发现了聚吡啶基钌(II)水合物独特的光异构反应。最近,我们试图深入了解配合物的光异构化机制,并在其物理化学性质和功能上区分远端/近端异构体。此外,聚吡啶基钌(II)水基配合物作为人工光合作用中不可缺少的活性水氧化催化剂(WOCs)也得到了广泛的研究。研究了多吡啶基钌(II)水合物远端/近端异构体对水氧化的催化作用及其机理,为开发更高效的水氧化分子催化剂提供了指导思想。综述了近年来本组多吡啶基钌(II)水基配合物的光异构化和水氧化研究进展,以了解钌配合物的性质和功能。
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