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Highly Active Ruthenium CNC Pincer Photocatalysts for Visible-Light-Driven Carbon Dioxide Reduction

机译:高活性钌CNC钳子光催化剂,用于可见光的二氧化碳减少

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摘要

Five ruthenium catalysts described herein facilitate self-sensitized carbon dioxide reduction to form carbon monoxide with a ruthenium catalytic center. These catalysts include four new and one previously reported CNC pincer complexes featuring a pyridinol derived Ndonor and N-heterocyclic carbene (NHC) C-donors derived from imidazole or benzimidazole. The complexes have been characterized fully by spectroscopic and analytic methods, including X-ray crystallography. Introduction of a 2,2'-bipyridine (bipy) coligand and phenyl groups on the NHC ligand was necessary for rapid catalysis. [(CNC)Ru(bipy)(CH3CN)](OTf)(2) is among the most active and durable photocatalysts in the literature for CO2 reduction without an external photosensitizer. The role of the structure of this complex in catalysis is discussed, including the importance of the pincer's phenyl wingtips, the bipyridyl ligand, and a weakly coordinating monodentate ligand.
机译:本文所述的五种钌催化剂促进了自敏感的二氧化碳还原以形成与钌催化中心的一氧化碳。 这些催化剂包括四种新的和先前报道的CNC钳子配合物,其具有衍生自咪唑或苯并咪唑的吡啶酚衍生的Ndonor和N-杂环基石(NHC)C-供体。 通过光谱和分析方法完全表征了复合物,包括X射线晶体学。 在NHC配体上引入2,2'-硼吡啶(Bipy)Cooligand和NHC配体上的苯基对于快速催化是必需的。 [(CNC)Ru(BiPY)(CH 3C)](OTF)(2)是在没有外部光敏剂的二氧化碳减少的文献中最活性和耐用的光催化剂。 讨论该络合物结构在催化中的作用,包括钳子苯基翼尖,双吡啶基配体和弱协调单址配体的重要性。

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