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一种具有双壳结构构型且含有Cu(II)/Cu(I)价态的高核硫化铜纳米团簇[S-Cu]

A High-Nuclearity Copper Sulfide Nanocluster [S-Cu] Featuring a Double-Shell Structure Configuration with Cu(II)/Cu(I) Valences.

作者信息

Xu Cheng, Jin Yuhao, Fang Hao, Zheng Huijuan, Carozza Jesse C, Pan Yanxiong, Wei Ping-Jie, Zhang Zhenyi, Wei Zheng, Zhou Zheng, Han Haixiang

机构信息

Interdisciplinary Materials Research Center, School of Materials Science and Engineering, Tongji University, Shanghai 201804, China.

Department of Chemistry, University at Albany, Albany, New York 12222, United States.

出版信息

J Am Chem Soc. 2023 Nov 29;145(47):25673-25685. doi: 10.1021/jacs.3c08549. Epub 2023 Oct 27.

Abstract

This work represents an important step in the quest for creating atomically precise binary semiconductor nanoclusters (BS-NCs). Compared with coinage metal NCs, the preparation of BS-NCs requires strict control of the reaction kinetics to guarantee the formation of an atomically precise single phase under mild conditions, which otherwise could lead to the generation of multiple phases. Herein, we developed an acid-assisted thiolate dissociation approach that employs suitable acid to induce cleavage of the S-C bonds in the Cu-S-R (R = alkyl) precursor, spontaneously fostering the formation of the [Cu-S-Cu] skeleton upon the addition of extra Cu sources. Through this method, a high-nuclearity copper sulfide nanocluster, CuS(SC(CH))(CFCOO) (abbreviated as [S-Cu] hereafter), has been successfully prepared in high yield, and its atomic structure was accurately modeled through single-crystal X-ray diffraction. It was revealed that [S-Cu] exhibits a unique double-shell structural configuration of [CuS]@[CuS], and the innermost [Cu] moiety displays a rhombic dodecahedron geometry, which has never been observed in previously synthesized Cu metal, hydride, or chalcogenide NCs. Importantly, [S-Cu] represents the first example incorporating mixed Cu(II)/Cu(I) valences in reported atomically precise copper sulfide NCs, which was unambiguously confirmed by XPS, EPR, and XANES. In addition, the electronic structure of [S-Cu] was established by a variety of optical investigations, including absorption, photoluminescence, and ultrafast transient absorption spectroscopies, as well as theoretical calculations. Moreover, [S-Cu] is air-stable and demonstrates electrocatalytic activity in ORR with a four-electron pathway.

摘要

这项工作是在追求制备原子精确的二元半导体纳米团簇(BS-NCs)方面迈出的重要一步。与贵金属纳米团簇相比,制备BS-NCs需要严格控制反应动力学,以确保在温和条件下形成原子精确的单相,否则可能会导致多相的产生。在此,我们开发了一种酸辅助硫醇盐解离方法,该方法使用合适的酸诱导Cu-S-R(R = 烷基)前驱体中S-C键的断裂,在添加额外的铜源后自发促进[Cu-S-Cu]骨架的形成。通过这种方法,高产率地成功制备了一种高核数硫化铜纳米团簇CuS(SC(CH))(CFCOO)(以下简称为[S-Cu]),并通过单晶X射线衍射精确模拟了其原子结构。结果表明,[S-Cu]呈现出独特的[CuS]@[CuS]双壳结构构型,最内层的[Cu]部分呈现菱形十二面体几何形状,这在先前合成的铜金属、氢化物或硫族化物纳米团簇中从未观察到。重要的是,[S-Cu]是报道的原子精确的硫化铜纳米团簇中第一个包含混合Cu(II)/Cu(I)价态的例子,这通过XPS、EPR和XANES得到了明确证实。此外,通过包括吸收、光致发光和超快瞬态吸收光谱等多种光学研究以及理论计算,确定了[S-Cu]的电子结构。此外,[S-Cu]在空气中稳定,并在ORR中表现出四电子途径的电催化活性。

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