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The significance of bromide in the Brust–Schiffrin synthesis of thiol protected gold nanoparticles

机译:溴化物在Brust-Schiffrin硫醇保护金纳米粒子的合成中的意义

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摘要

The mechanism of the two-phase Brust–Schiffrin synthesis of alkane thiol protected metal nanoparticles is known to be highly sensitive to the precursor species and reactant conditions. In this work X-ray absorption spectroscopy is used in conjunction with liquid/liquid electrochemistry to highlight the significance of Br in the reaction mechanism. The species [AuBr4] is shown to be a preferable precursor in the Brust–Schiffrin method as it is more resistant to the formation of Au(i) thiolate species than [AuCl4]. Previous literature has demonstrated that avoidance of the Au(i) thiolate is critical to achieving a good yield of nanoparticles, as [Au(i)X2] species are more readily reduced by NaBH4. We propose that the observed behavior of [AuBr4] species described herein explains the discrepancies in reported behavior present in the literature to date. This new mechanistic understanding should enable nanoparticle synthesis with a higher yield and reduce particle size polydispersity.
机译:众所周知,烷烃硫醇保护的金属纳米粒子的两相Brust-Schiffrin合成机理对前体物种和反应物条件高度敏感。在这项工作中,X射线吸收光谱与液体/液体电化学结合使用,以突出Br 在反应机理中的重要性。物种[AuBr4] 在Brust-Schiffrin方法中显示是较好的前体,因为它比[AuCl4] -<更能抵抗硫醇Au(i)的形成。 / sup>。先前的文献表明,避免使用Au(i)硫醇盐对于获得良好的纳米颗粒收率至关重要,因为[Au(i)X2] -物种更容易被NaBH4还原。我们建议观察到的此处描述的[AuBr4] 物种的行为解释了迄今为止文献中所报道行为的差异。这种新的机理理解应该能够以更高的产率合成纳米颗粒并降低粒度的多分散性。

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