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Balancing the Rate of Cluster Growth and Etching for Gram-Scale Synthesis of Thiolate-Protected Au_(25) Nanoclusters with Atomic Precision

机译:平衡原子团簇生长速率和蚀刻速率,以精确合成硫醇盐保护的Au_(25)纳米团簇。

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We report a NaOH-mediated NaBH4 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 NaBH4 and accelerate the etching ability of free thiolate ligands, leading to a well-balanced reversible reaction for rapid formation of thermody-namically 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.
机译:我们报告了NaOH介导的NaBH4还原方法,用于合成具有Au核心和硫醇盐配体表面的精确控制的单,双和三硫醇盐保护的Au_(25)纳米团簇(NCs)。关键策略是使用NaOH调节Au NCs的形成动力学,即降低NaBH4的还原能力并加速游离硫醇盐配体的蚀刻能力,从而导致可逆反应的平衡,从而快速形成热力学有利的反应。 Au_(25)NCs。该方案简便,快速(≤3小时),用途广泛(适用于各种硫醇盐配体)和高度可扩展(> 1 g Au NCs)。此外,容易获得具有可调节杂硫醇盐配体比例的二和三硫醇盐保护的Au_(25)NC。配体在分子比率,空间分布和均匀性方面的精确度导致在Au NC上形成了丰富多样的表面景观,该Au NCs由多个官能团(例如羧基,胺和羟基)组成。基于NMR光谱的分析表明,NC上的杂配体分布均匀,没有配体偏析。多硫醇盐保护的Au_(25)NCs的空前合成可以进一步促进功能金属NCs的实际应用。

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