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首页> 外文期刊>Journal of physical chemistry letters >Transformation of Au-144(SCH2CH2Ph)(60) to Au-133(SPh-tBu)(52) Nanomolecules: Theoretical and Experimental Study
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Transformation of Au-144(SCH2CH2Ph)(60) to Au-133(SPh-tBu)(52) Nanomolecules: Theoretical and Experimental Study

机译:Au-144(SCH2CH2Ph)(60)向Au-133(SPh-tBu)(52)纳米分子的转化:理论和实验研究

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摘要

Ultrastable gold nanomolecule Au-144(SCH2CH2Ph)(60) upon etching with excess tert-butylbenzenethiol undergoes a core-size conversion and compositional change to form an entirely new core of Au-133(SPh-tBu)(52). This conversion was studied using high-resolution electrospray mass spectrometry which shows that the core size conversion is initiated after 22 ligand exchanges, suggesting a relatively high stability of the Au-144(SCH2CH2Ph)(38)(SPh-tBu)(22) intermediate. The Au-144 -> Au-133 core size conversion is surprisingly different from the Au-144 -> Au-99 core conversion reported in the case of thiophenol, -SPh. Theoretical analysis and ab initio molecular dynamics simulations show that rigid p-tBu groups play a crucial role by reducing the cluster structural freedom, and protecting the cluster from adsorption of exogenous and reactive species, thus rationalizing the kinetic factors that stabilize the Au-133 core size. This 144-atom to 133-atom nanomolecule's compositional change is reflected in optical spectroscopy and electrochemistry.
机译:在用过量的叔丁基苯硫醇蚀刻后,超稳定金纳米分子Au-144(SCH2CH2Ph)(60)经历了核尺寸转换和成分变化,从而形成了Au-133(SPh-tBu)(52)的全新核。使用高分辨率电喷雾质谱研究了这种转化,结果表明核心尺寸转化是在22个配体交换后开始的,这表明Au-144(SCH2CH2Ph)(38)(SPh-tBu)(22)中间体的稳定性较高。在硫酚-SPh的情况下,Au-144-> Au-133核尺寸转换与Au-144-> Au-99核转换令人惊讶地不同。理论分析和从头算分子动力学模拟表明,刚性的p-tBu基团通过降低簇的结构自由度并保护簇免受外源和反应性物种的吸附,从而使稳定Au-133核的动力学因素合理化,发挥了至关重要的作用。尺寸。 144原子到133原子的纳米分子的组成变化反映在光谱学和电化学中。

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