Noble Metal‐Free Photosensitive Terpyridine Coordination Assemblies for Efficient Single‐Molecule H 2 O 2 Photocatalysis

光催化 三吡啶 材料科学 光化学 聚合物 电子转移 激发态 催化作用 聚合 可见光谱 纳米技术 化学工程 贵金属 分子 半导体 化学 高分子化学 科技与社会 人工光合作用 绿色化学
作者
Fan Fu,Mingliang Liu,Liyu Xiao,Ning Wang,Jun Wang,Yiming Li,Yi Zhang,Hui Liu,George R. Newkome,Pingshan Wang,Die Liu,Fan Fu,Mingliang Liu,Liyu Xiao,Ning Wang,Jun Wang,Yiming Li,Yi Zhang,Hui Liu,George R. Newkome
出处
期刊:Angewandte Chemie [Wiley]
卷期号:: e18696-e18696
标识
DOI:10.1002/anie.202518696
摘要

Abstract Conventional molecular photocatalysts characterized by long‐lived excited states, such as Ru and Ir complexes are widely recognized and used in photocatalysis. However, developing new heavy atom‐free photosensitive coordination complexes by manipulating their molecular structures to achieve highly efficient photocatalytic reactions remains challenging. In this study, a series of novel terpyridine complexes, S1 – S4 , with a rigid donor–acceptor configuration was designed and synthesized via precise heteroleptic, coordination‐driven self‐assembly. Experimental data, combined with theoretical calculations, confirmed that long‐lived charge‐transfer excited states were generated, enabling excellent photosensitivity. Furthermore, high‐efficiency photocatalytic total synthesis of H 2 O 2 was achieved in pure water under an air atmosphere via a synergetic process of energy transfer and electron transfer to form 1 O 2 and •O 2 – , respectively, in these complexes, differing significantly from previous reports on polymer catalysts. Notably, complex S1 exhibited an outstanding photocatalytic H 2 O 2 production rate of 10 mmol g −1 h −1 , outperforming most organic photocatalytic systems. In addition, S1 achieved a photocatalytic rate of up to 40 mmol g −1 h −1 and a solar‐to‐chemical conversion of 1.23% with the sacrificial agent. This study not only paves the way for the development of novel noble metal‐free photocatalysts but also introduces a novel photocatalytic paradigm for the green and high‐performance synthesis of H 2 O 2 .
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