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Experimental evidence of icosahedral and decahedral packing in one-dimensional nanostructures

机译:一维纳米结构中二十面体和十面体堆积的实验证据

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The packing of spheres is a subject that has drawn the attention of mathematicians and philosophers for centuries and that currently attracts the interest of the scientific community in several fields. At the nanoscale, the packing of atoms affects the chemical and structural properties of the material and, hence, its potential applications. This report describes the experimental formation of 5-fold nanostructures by the packing of interpenetrated icosahedral and decahedral units. These nanowires, formed by the reaction of a mixture of metal salts (Au and Ag) in the presence of oleylamine, are obtained when the chemical composition is specifically Ag/Au = 3:1. The experimental images of the icosahedral nanowires have a high likelihood with simulated electron micrographs of structures formed by two or three Boerdijk-Coxeter-Bernal helices roped on a single structure, whereas for the decahedral wires, simulations using a model of adjacent decahedra match the experimental structures. To our knowledge, this is the first report of the synthesis of nanowires formed by the packing of structures with 5-fold symmetry. These icosahedral nanowire structures are similar to those of quasicrystals, which can only be formed if at least two atomic species are present and in which icosahedral and decahedral packing has been found for bulk crystals.
机译:球的堆积是一个世纪以来引起数学家和哲学家注意的主题,并且当前引起科学界在几个领域的兴趣。在纳米级,原子的堆积影响材料的化学和结构性质,并因此影响其潜在的应用。该报告描述了通过互穿的二十面体和十面体单元的堆积而形成的5倍纳米结构的实验性形成。当化学组成为Ag / Au = 3:1时,可以得到这些纳米线,这些纳米线是由金属盐(Au和Ag)的混合物在油胺存在下反应形成的。二十面体纳米线的实验图像具有很高的可能性,其模拟的电子显微照片是由两个或三个绑在单个结构上的Boerdijk-Coxeter-Bernal螺旋形成的结构,而对于十面体线,使用相邻十面体模型的模拟与实验相符。结构。据我们所知,这是关于纳米线合成的第一个报告,该纳米线是由具有5倍对称性的结构堆积而成的。这些二十面体的纳米线结构与准晶体的结构相似,仅当存在至少两个原子种类且在大块晶体中发现二十面体和十面体堆积时,才能形成准晶体。

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