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Mechanism of silver nano-particles formation on α-alumina using supercritical water

机译:超临界水在α-氧化铝上形成银纳米颗粒的机理

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摘要

Supercritical water impregnation is a novel method, which utilizes high diffusivity of the fluid with hydrothermal synthesis allowing nano-particles to deposit on porous materials in well-dispersed condition. In this work, silver nano-particles were deposited on the surface of α-alumina supports using metal acetate solution. TEM-EDS analyses clearly identified the silver particle of two kinds, those deposited on α-alumina surface and those gathering in bulk phase. Their particle size distribution showed differences in propensity, implying that particle formation were via different mechanism. The difference in particle deposition mechanism was also confirmed from the results of other operational factors investigated. Furthermore, the mechanism of particle deposition to alumina support surface have been proposed based on the experimental results and reported observation of nucleation and particle growth steps during the hydrothermal synthesis. In addition, the mechanism of silver particle formation has been discussed in detail.
机译:超临界水浸渍是一种新颖的方法,该方法利用流体的高扩散率和水热合成技术,使纳米粒子以良好分散的状态沉积在多孔材料上。在这项工作中,使用金属乙酸盐溶液将银纳米颗粒沉积在α-氧化铝载体的表面上。 TEM-EDS分析清楚地确定了两种银粒子,分别沉积在α-氧化铝表面和聚集在体相中。它们的粒度分布显示出倾向的差异,这意味着颗粒形成是通过不同的机理进行的。颗粒沉积机理的差异也可以从其他操作因素的研究结果中得到证实。此外,基于实验结果提出了颗粒沉积到氧化铝载体表面上的机理,并报道了在水热合成过程中观察到的成核和颗粒生长步骤。另外,已经详细讨论了银颗粒形成的机理。

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