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'Hot spots' growth on single nanowire controlled by electric charge

机译:“热点”增长单一纳米线控制由电荷

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摘要

"Hot spots" - a kind of highly active site, which are usually composed of some unique units, such as defects, interfaces, catalyst particles or special structures - can determine the performance of nanomaterials. In this paper, we study a model system, i.e. "hot spots" on a single Ag nanowire in the galvanic replacement reaction (GRR), by dark-field microscopy. The research reveals that electric charge can be released by the formation reaction of AgCl, and consequently the electrochemical potential on Ag nanowire drops. The electric charge could induce the reduction of Ag+ to form the "hot spots" on the nanowire during the GRR. The appearance probability of "hot spots" is almost even along the Ag nanowire, while it is slightly lower near the two ends. The spatial distance between adjacent "hot spots" is also controlled by the charge, and obeys a model based on Boltzmann distribution. In addition, the distance distribution here has an advantage in electron transfer and energy saving. Therefore, it's necessary to consider the functions of electric charge during the synthesis or application of nanomaterials.
机译:“热点”——一种高度活跃的网站通常是由一些独特的单位,这样的吗缺陷、接口、粒子或催化剂特殊结构——可以确定纳米材料的性能。研究一个模型系统,即。单一Ag纳米线的电更换反应(嗯……),暗视野显微镜。研究表明,电荷AgCl发布的形成反应,因此Ag)的电化学势纳米线下降。减少Ag) +形成的“热点”嗯……的纳米线。“热点”的概率几乎是连一起银纳米线,而附近略低这两个目的。相邻的“热点”也是控制的根据玻耳兹曼,遵循一个模型分布。在电子分布在这里有一个优势转让和节能。必要考虑电动功能合成或应用程序中纳米材料。

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