Open Nitrogen Site-Induced Kinetic Resolution and Catalysis of a Gold Nanocluster.

Zhang, Tai-Song; Fei, Wenwen; Li, Na; Zhang, Ying; Xu, Chang; Luo, Qiquan; Li, Man-Bo · Nano Lett · 2023

basic_science · Level V

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Abstract

The emerging metal nanocluster provides a platform for the investigation of structural features, unique properties, and structure-property correlation of nanomaterials at the atomic level. Construction of open sites on the surface of the metal nanocluster is a long-pursued but challenging goal. Herein, we realized the construction of "open organic sites" in a metal nanocluster for the first time. Specifically, we introduce the PNP (2,6-bis(diphenylphosphinomethyl)pyridine) pincer ligand in the synthesis of the gold nanocluster, enabling the construction of a structurally precise Au<sub>8</sub>(PNP)<sub>4</sub> nanocluster. The rigidity and the unique bonding mode of PNP lead to open nitrogen sites on the surface of the Au<sub>8</sub>(PNP)<sub>4</sub> nanocluster, which have been utilized as multifunctional sites in this work for efficient kinetic resolution and catalysis. The gold pincer nanocluster and the open nitrogen site-induced performance will be enlightening for the construction of multifunctional metal nanoclusters.

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