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Copper-Based Photosensitisers in Water Reduction: A More Efficient In Situ Formed System and Improved Mechanistic Understanding

机译:铜基光敏剂在减水中的应用:更高效的原位形成系统和增强的机理理解

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摘要

The reduction of water has been achieved through a non-noble-metal-based homogeneous catalyst system that is formed in situ. Optimisation of the ligand quantities increased catalyst turnover numbers compared to preformed complexes. Mechanistic studies confirm a heteroleptic Cu complex as the active photosensitiser (PS) and an in situ formed Fe-phosphido dimer complex as the water reduction catalyst. The in situ method has been used to screen a range of ligands for the active PS, which has led to the identification a number of structural features important to longevity and performance.
机译:通过原位形成的基于非贵金属的均相催化剂体系已经实现了水的减少。与预形成的配合物相比,配体数量的优化提高了催化剂的转化率。机理研究证实,杂铜Cu络合物可作为活性光敏剂(PS),而原位形成的Fe磷酸二聚体络合物可作为减水催化剂。原位方法已用于筛选活性PS的一系列配体,这导致鉴定出许多对寿命和性能至关重要的结构特征。

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