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Study of Colloidal Gold Synthesis Using Turkevich Method

机译:使用TureTevich方法研究胶体金合成

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The synthesis of colloidal gold or Au-nanoparticles (Au-NPs) by reduction of chloroauric acid (HAuCl4) with sodium citrate was done using Turkevich method. We prepare HAuCl4 solution by dissolving gold wires (99.99%) into aqua regia solution. To initiate the Au-NPs synthesis 0.17 ml of 1 % chloroauric acid solution was heated to the boiling point and then 10 ml of 1 % sodium citrate was added to the boiling solution with a constant stirring in order to maintain a homogenous solution. A color of faint gray was observed in the solution approximately one minute and in a period of 2 - 3 minutes later, it further darkened to deep wine and red color. It showed that the gold solution has reduced to Au-NPs. The effect of process temperature on the size of Au-NPs prepared by sodium citrate reduction has alsobeen investigated. With increasing temperature of Au-NPs synthesis, smaller-size Au-NPs were obtained. The higher temperatures shorten the time needed to achieve activation energy for reduction process. The resulting Au-NPs has been characterized by scanning Electron Microscope (SEM), showing the size of Au-NPs average diameter is ~20-27 nm. The resulting colloidal gold will be used as catalyst for Si nanowires growth using VLS method.
机译:使用TureSvich方法通过用柠檬酸钠还原用氯酸钠还原通过氯酸钠(Haucl4)来合成胶体金或Au-n族颗粒)。我们通过将金线(99.99%)溶解到Aqua Regia解决方案中来准备Haucl4解决方案。为了引发Au-NPS合成,将0.17ml 1%氯硼酸溶液加热至沸点,然后在恒定搅拌下向沸点溶液中加入10ml 1%柠檬酸钠,以保持均匀的溶液。在溶液中观察到一种微弱的灰色,在溶液中观察到大约一分钟,在2-3分钟后,它进一步变暗于深葡萄酒和红颜色。结果表明,金溶液已降至Au-NPS。处理温度对柠檬酸钠还原钠制备的Au-NP尺寸的影响具有三种Alsobeen。随着AU-NPS合成的升高,获得较小尺寸的AU-NP。较高的温度缩短了实现减少过程的激活能量所需的时间。通过扫描电子显微镜(SEM),表明所得到的AU-NPS,显示AU-NPS平均直径为20-27nm的尺寸。使用VLS方法将得到的胶体金作为Si纳米线生长的催化剂。

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