纳米团簇
化学
配体(生物化学)
星团(航天器)
金属
结晶学
组合化学
有机化学
计算机科学
生物化学
受体
程序设计语言
作者
Xun Yuan,Bin Zhang,Zhentao Luo,Qiaofeng Yao,David Tai Leong,Ning Yan,Jianping Xie
标识
DOI:10.1002/ange.201311177
摘要
Abstract We report a NaOH‐mediated NaBH 4 reduction method for the synthesis of mono‐, bi‐, and tri‐thiolate‐protected Au 25 nanoclusters (NCs) with precise control of both the Au core and thiolate ligand surface. The key strategy is to use NaOH to tune the formation kinetics of Au NCs, i.e., reduce the reduction ability of NaBH 4 and accelerate the etching ability of free thiolate ligands, leading to a well‐balanced reversible reaction for rapid formation of thermodynamically favorable Au 25 NCs. This protocol is facile, rapid (≤3 h), versatile (applicable for various thiolate ligands), and highly scalable (>1 g Au NCs). In addition, bi‐ and tri‐thiolate‐protected Au 25 NCs with adjustable ratios of hetero‐thiolate ligands were easily obtained. Such ligand precision in molecular ratios, spatial distribution and uniformity resulted in richly diverse surface landscapes on the Au NCs consisting of multiple functional groups such as carboxyl, amine, and hydroxy. Analysis based on NMR spectroscopy revealed that the hetero‐ligands on the NCs are well distributed with no ligand segregation. The unprecedented synthesis of multi‐thiolate‐protected Au 25 NCs may further promote the practical applications of functional metal NCs.
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