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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Size-Selective Separation of Polydisperse Gold Nanoparticles in Supercritical Ethane
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Size-Selective Separation of Polydisperse Gold Nanoparticles in Supercritical Ethane

机译:超临界乙烷中多分散金纳米粒子的尺寸选择分离

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The aim of this study was to use supercritical ethane to selectively disperse alkanethiol-stabilized gold nanoparticles of one size from a polydisperse sample in order to recover a monodisperse fraction of the nanoparticles. A disperse sample of metal nanoparticles with diameters in the range of 1-5 nm was prepared using established techniques then further purified by Soxhlet extraction. The purified sample was subjected to supercritical ethane at a temperature of 318 K in the pressure range 50-276 bar. Particles were characterized by UV-vis absorption spectroscopy, TEM, and MALDI-TOF mass spectroscopy. The results show that with increasing pressure the dispersibility of the nanoparticles increases, this effect is most pronounced for smaller nanoparticles. At the highest pressure investigated a sample of the particles was effectively stripped of all the smaller particles leaving a monodisperse sample. The relationship between dispersibility and supercritical fluid density for two different size samples of alkanethiol-stabilized gold nanoparticles was considered using the Chrastil chemical equilibrium model.
机译:这项研究的目的是使用超临界乙烷从多分散样品中选择性地分散一种尺寸的烷硫醇稳定化的金纳米颗粒,以回收纳米颗粒的单分散部分。使用已建立的技术制备直径在1-5 nm范围内的金属纳米颗粒的分散样品,然后通过索氏提取进一步纯化。将纯化的样品在318 K的温度下于50-276 bar的压力下进行超临界乙烷处理。通过紫外可见吸收光谱,TEM和MALDI-TOF质谱对颗粒进行表征。结果表明,随着压力的增加,纳米颗粒的分散性增加,这种作用对于较小的纳米颗粒最为明显。在研究的最高压力下,有效去除了所有较小颗粒的颗粒样品,剩下了单分散样品。使用Chrastil化学平衡模型考虑了两个不同大小的链烷硫醇稳定的金纳米颗粒样品的分散性与超临界流体密度之间的关系。

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