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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >New insights on the nanoparticle growth mechanism in the citrate reduction of Gold(III) salt: Formation of the au nanowire intermediate and its nonlinear optical properties
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New insights on the nanoparticle growth mechanism in the citrate reduction of Gold(III) salt: Formation of the au nanowire intermediate and its nonlinear optical properties

机译:柠檬酸还原金(III)盐中纳米粒子生长机理的新见解:金纳米线中间体的形成及其非线性光学性质

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The synthesis of gold nanospheres via the reduction of AuCl4- salt by sodium citrate has been revisited, with focus on the mechanism of particle growth. In stark contrast to the widely accepted LaMer nucleation-growth model, the initially formed nanoclusters of about 5 nm diameter self-assemble to form an extensive network of nanowires. The diameter of the nanowires progressively increases in size, and at the same time the connected network is fragmented into small segments before the final spherical particles are formed. We put forward a modified nanocrystal growth mechanism, which is able to explain a number of other experimental observations. By arresting the reduction process by rapid cooling, the 5 nm diameter nanowires could be isolated and were found to be very stable. The nonlinear optical properties of the Au nanowires were investigated and discussed. Highly connected, small diameter nanowires of highly conductive metals may be useful for future electronic applications, e.g., conductive polymer-metal composites with low metal loading.
机译:关于通过柠檬酸钠还原AuCl4-盐来合成金纳米球的研究已经重新开始,重点是粒子的生长机理。与广泛接受的LaMer成核-生长模型形成鲜明对比的是,最初形成的直径约5 nm的纳米团簇自组装形成了广泛的纳米线网络。纳米线的直径尺寸逐渐增加,并且同时,在形成最终的球形颗粒之前,连接的网络被破碎成小段。我们提出了一种改进的纳米晶体生长机制,它能够解释许多其他实验观察。通过迅速冷却阻止还原过程,可以隔离直径为5 nm的纳米线,并且发现它们非常稳定。研究和讨论了金纳米线的非线性光学性质。高导电金属的高度连接的小直径纳米线可用于未来的电子应用,例如,具有低金属负载的导电聚合物-金属复合材料。

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