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首页> 外文期刊>Materiali in Tehnologije >Au-NANOPARTICLE SYNTHESIS VIA ULTRASONIC SPRAY PYROLYSIS WITH A SEPARATE EVAPORATION ZONE
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Au-NANOPARTICLE SYNTHESIS VIA ULTRASONIC SPRAY PYROLYSIS WITH A SEPARATE EVAPORATION ZONE

机译:通过单独的蒸发区通过超声喷雾热解法合成金纳米颗粒

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摘要

Some experiments were conducted in connection with the gold-nanoparticle production in an effort to produce a more accurate model for determining the gold-nanoparticle synthesis with a modified ultrasonic spray pyrolysis (USP). As previous experiments with gold nanoparticles yielded nanoparticles of various shapes (spherical, triangular, cylindrical, etc.), a focus on sxpthesizing only spherical nanoparticles is underway, as a mixture of different shapes is difficult to characterize and utilize. One of the factors for the particle formation is droplet evaporation. In an attempt to produce the optimum conditions for droplet evaporation with the solvent diffusion and precipitation, a separate furnace and a separate reaction-gas inlet were used. This modification separates the evaporation stage from the reaction stage, compared to the standard USP set-up. Using relatively low temperatures, from 60 degrees C up to 140 degrees C, for the evaporation stage provides for more time and better conditions for the diffusion of the solvent into the center of a droplet and a higher probability of forming a spherical particle.
机译:进行了一些与金纳米颗粒生产相关的实验,以期产生一种更精确的模型,用于通过改进的超声喷雾热解法(USP)确定金纳米颗粒的合成。正如先前用金纳米颗粒进行的实验所产生的各种形状(球形,三角形,圆柱形等)的纳米颗粒一样,由于难以表征和利用不同形状的混合物,因此人们仅专注于球形纳米颗粒的合成。颗粒形成的因素之一是液滴蒸发。为了通过溶剂扩散和沉淀来产生液滴蒸发的最佳条件,使用了一个单独的炉子和一个单独的反应气体入口。与标准的USP设置相比,此修改使蒸发阶段与反应阶段分离。在蒸发阶段使用从60摄氏度到140摄氏度的较低温度,为溶剂扩散到液滴中心提供了更多的时间和更好的条件,并且形成球形颗粒的可能性更高。

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