人工光合作用
化学
分解水
催化作用
光系统II
析氧
星团(航天器)
锰
羧酸盐
光化学
水团
氧化物
析氧络合物
光合作用
分子
氢键
电化学
物理化学
立体化学
光催化
有机化学
生物化学
电极
计算机科学
程序设计语言
作者
Yang Chen,Yao Su,Juanjuan Han,Changhui Chen,Hongjun Fan,Chunxi Zhang
标识
DOI:10.1002/cssc.202401031
摘要
Abstract The photosynthetic oxygen‐evolving center (OEC) is a unique Mn 4 CaO 5 ‐cluster that catalyses water splitting into electrons, protons, and dioxygen. Precisely structural and functional mimicking of the OEC is a long‐standing challenge and pressingly needed for understanding the structure‐function relationship and catalytic mechanism of O−O bond formation. Herein we report two simple and robust artificial Mn 3 Ce 2 O 5 ‐complexes that display a remarkable structural similarity to the OEC in regarding of the ten‐atom core (five metal ions and five oxygen bridges) and the alkyl carboxylate peripheral ligands. This Mn 3 Ce 2 O 5 ‐cluster can catalyse the water‐splitting reaction on the surface of ITO electrode. These results clearly show that cerium can structurally and functionally replace both calcium and manganese in the cluster. Mass spectroscopic measurements demonstrate that the oxide bridges in the cluster are exchangeable and can be rapidly replaced by the isotopic oxygen of H 2 18 O in acetonitrile solution, which supports that the oxide bridge(s) may serve as the active site for the formation of O−O bond during the water‐splitting reaction. These results would contribute to our understanding of the structure‐reactivity relationship of both natural and artificial clusters and shed new light on the development of efficient water‐splitting catalysts in artificial photosynthesis.
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