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Cu(I) 簇向多功能CuAg纳米簇的异常结构转变。

Anomalous Structural Transformation of Cu(I) Clusters into Multifunctional CuAg Nanoclusters.

作者信息

Yao Yuqing, Hao Wei, Tang Jin, Kirschbaum Kristin, Gianopoulos Christopher G, Ren An, Ma Liang, Zheng Letian, Li Hanying, Li Qi

机构信息

Ministry of Education Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310027, China.

Department of Chemistry and Biochemistry, University of Toledo, Toledo, Ohio, 43606, United States.

出版信息

Angew Chem Int Ed Engl. 2024 Sep 2;63(36):e202407214. doi: 10.1002/anie.202407214. Epub 2024 Jun 30.

Abstract

We report an anomalous structural transformation of a Cu(I) cluster into two different types of copper-silver (CuAg) alloy nanoclusters. Different from previous reports, we demonstrate that under specifically designed reaction conditions, the Ag-doping could induce a substantial growth of the starting Cu and a AgCu nanocluster was obtained via the unexpected insertion of an Ag kernel inside the Cu(I)-S shell. AgCu demonstrates high activity to initiate the photopolymerization of previously hard-to-print inorganic polymers in 3D laser microprinting. Interestingly, a slight modification of the reaction condition leads to the formation of another AgCuS (8≤x) nanocluster templated by a central S anion, which possesses a unique electronic structure compared to conventional template-free CuAg nanoclusters. Overall, this work unveils the intriguing doping chemistry of Cu clusters, as well as their capability to create different types of alloy nanoclusters with previously unobtainable structures and multifunctionality.

摘要

我们报道了一种Cu(I)簇向两种不同类型的铜银(CuAg)合金纳米簇的异常结构转变。与先前的报道不同,我们证明在特定设计的反应条件下,Ag掺杂可诱导起始Cu的大量生长,并且通过在Cu(I)-S壳层内意外插入Ag核获得了AgCu纳米簇。AgCu在3D激光微打印中对引发先前难以打印的无机聚合物的光聚合表现出高活性。有趣的是,反应条件的轻微改变导致形成另一种以中心S阴离子为模板的AgCuS (8≤x)纳米簇,与传统的无模板CuAg纳米簇相比,它具有独特的电子结构。总体而言,这项工作揭示了Cu簇有趣的掺杂化学,以及它们创造具有以前无法获得的结构和多功能性的不同类型合金纳米簇的能力。

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