MODELING OF A NANOCYLINDER

S. Baranov
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Abstract

The results of the theory of modeling for obtaining nanocylinders have been described. A case of a nanocylinder whose diameters are shorter than the Tolman length has been considered. This important issue is taken into account in studying a nanocylinder for which, in the simplest model, the thickness of the interfacial layer cannot be determined because it supposedly has a small size. At the same time, it has been shown that the introduction of a special form of anisotropy energy makes it possible to analytically describe the origin of an interfacial layer whose sizes can be regarded as sizes comparable to the Tolman length.
纳米圆柱体的建模
本文描述了制备纳米柱的理论模拟结果。考虑了直径小于托尔曼长度的纳米圆柱体的一种情况。在研究纳米圆柱体时,考虑到这一重要问题,在最简单的模型中,由于其尺寸较小,无法确定界面层的厚度。同时,研究表明,引入一种特殊形式的各向异性能量,可以解析地描述界面层的起源,其尺寸可视为与托尔曼长度相当的尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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