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[Au18(SR)14] 纳米团簇的结构和光学性质。

The structure and optical properties of the [Au18(SR)14] nanocluster.

机构信息

Department of Chemistry and Centre for Atomic Engineering of Advanced Materials, Anhui University, Hefei, Anhui, 230601 (P.R. China).

出版信息

Angew Chem Int Ed Engl. 2015 Mar 2;54(10):3145-9. doi: 10.1002/anie.201410295. Epub 2015 Jan 23.

Abstract

Decreasing the core size is one of the best ways to study the evolution from Au(I) complexes into Au nanoclusters. Toward this goal, we successfully synthesized the [Au18(SC6H11)14] nanocluster using the [Au18(SG)14] (SG=L-glutathione) nanocluster as the starting material to react with cyclohexylthiol, and determined the X-ray structure of the cyclohexylthiol-protected [Au18(C6H11S)14] nanocluster. The [Au18(SR)14] cluster has a Au9 bi-octahedral kernel (or inner core). This Au9 inner core is built by two octahedral Au6 cores sharing one triangular face. One transitional gold atom is found in the Au9 core, which can also be considered as part of the Au4(SR)5 staple motif. These findings offer new insight in terms of understanding the evolution from [Au(I)(SR)] complexes into Au nanoclusters.

摘要

减小核的尺寸是研究从金(I)配合物到金纳米簇演变的最佳方法之一。为此,我们成功地使用[Au18(SG)14](SG=L-谷胱甘肽)纳米簇作为起始原料,与环己硫醇反应,合成了[Au18(SC6H11)14]纳米簇,并确定了环己硫醇保护的[Au18(C6H11S)14]纳米簇的 X 射线结构。[Au18(SR)14] 簇具有 Au9 双八面体核(或内核)。这个 Au9 内核由两个共享一个三角形面的八面体 Au6 核组成。在 Au9 核中发现了一个过渡金原子,也可以将其视为 Au4(SR)5 钉状基序的一部分。这些发现为理解从[Au(I)(SR)]配合物到金纳米簇的演变提供了新的见解。

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