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Electrochemical investigations of metal nanostructure growth with single crystals

机译:金属的电化学研究纳米结构生长单晶

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摘要

Control over the nanoscopic structure of a material allows one to tune its properties for a wide variety of applications. Colloidal synthesis has become a convenient way to produce anisotropic metal nanostructures with a desired set of properties, but in most syntheses, the facet-selective surface chemistry causing anisotropic growth is not well-understood. This review highlights the recent use of electrochemical methods and single-crystal electrodes to investigate the roles of organic and inorganic additives in modulating the rate of atomic addition to different crystal facets. Differential capacitance and chronocoulometric techniques can be used to extract thermodynamic data on how additives selectively adsorb, while mixed potential theory can be used to observe the effect of additives on the rate of atomic addition to a specific facet. Results to date indicate that these experimental methods can provide new insights into the role capping agents and halides play in controlling anisotropic growth.
机译:控制的纳米结构材料允许一个调整它的属性各种各样的应用程序。已经成为一种方便的方法来生产吗各向异性与所需的金属纳米结构组属性,但在大多数合成,facet-selective表面化学造成各向异性生长不是很好理解。概述了最近的使用电化学方法和单晶电极对有机的角色和无机添加剂调制的速度原子晶体不同的方面。微分电容和chronocoulometric技术可以用来提取热力学数据如何添加剂有选择地吸附,而混合电位理论可以用来观察添加剂对原子的速率的影响除了特定的方面。表明这些实验方法提供新的视角限制代理人的角色和卤化物在控制各向异性增长。

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