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去湿在微纳米技术中的应用。

Applications of dewetting in micro and nanotechnology.

机构信息

Consiglio Nazionale delle Ricerche, Istituto per lo Studio dei Materiali Nanostrutturati (CNR-ISMN), via P. Gobetti 101, 40129 Bologna, Italy.

出版信息

Chem Soc Rev. 2012 Jun 21;41(12):4430-43. doi: 10.1039/c2cs35040h. Epub 2012 Apr 10.

Abstract

Dewetting is a spontaneous phenomenon where a thin film on a surface ruptures into an ensemble of separated objects, like droplets, stripes, and pillars. Spatial correlations with characteristic distance and object size emerge spontaneously across the whole dewetted area, leading to regular motifs with long-range order. Characteristic length scales depend on film thickness, which is a convenient and robust technological parameter. Dewetting is therefore an attractive paradigm for organizing a material into structures of well-defined micro- or nanometre-size, precisely positioned on a surface, thus avoiding lithographical processes. This tutorial review introduces the reader to the physical-chemical basis of dewetting, shows how the dewetting process can be applied to different functional materials with relevance in technological applications, and highlights the possible strategies to control the length scales of the dewetting process.

摘要

去湿是一种自发的现象,即表面上的薄膜破裂成离散物体的集合,如液滴、条纹和柱子。整个去湿区域会自发地出现具有特征距离和物体大小的空间相关性,从而产生具有长程有序的规则图案。特征长度尺度取决于薄膜厚度,这是一个方便且稳健的技术参数。因此,去湿是一种将材料组织成具有明确定义的微观或纳米尺寸结构的有吸引力的范例,这些结构精确地定位在表面上,从而避免了光刻工艺。本教程综述向读者介绍了去湿的物理化学基础,展示了如何将去湿过程应用于具有技术应用相关性的不同功能材料,并强调了控制去湿过程长度尺度的可能策略。

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