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Pore shape evolution in mesoporous silica thin films: From circular to elliptical to rectangular

机译:介孔二氧化硅薄膜中的孔形演变:从圆形到椭圆形到矩形

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摘要

The synthetically tailored morphologies of mesoporous silica thin films are important for applications to sensing, separations, and catalysis. Control of mesopore shapes may be useful for controlling the sizes or orientations of analyte or reactant molecules entering the mesopores. Sol-gel methods using surfactant templates can produce a variety of mesoporous phases, including one composed of long cylindrical micelles in a hexagonal stacking arrangement, aligned parallel to the substrate. This hexagonal phase is particularly useful for analysis of the thin film stresses that produce the circular-elliptical-rectangular shape changes in the micelle cross-sections as the film dries. A simple model is proposed to describe this shape evolution using a minimal set of parameters: mesopore aspect ratios are predicted from the known Poisson ratio of the silica and the measured thickness strain of the film. The model may be of general utility for guiding the structural design of thin film mesoporous materials. (c) 2005 Elsevier B.V. All rights reserved.
机译:介孔二氧化硅薄膜的合成定制形态对于传感,分离和催化应用很重要。中孔形状的控制对于控制进入中孔的分析物或反应物分子的大小或取向可能是有用的。使用表面活性剂模板的溶胶-凝胶法可产生多种中孔相,包括一个由六边形堆积排列的长圆柱状胶束组成的相,该相平行于基材排列。该六角形相特别适用于分析薄膜应力,薄膜应力随着薄膜干燥而在胶束横截面上产生圆形椭圆矩形形状的变化。提出了一个简单的模型,使用最少的参数来描述这种形状​​的演变:中孔的长宽比是根据已知的二氧化​​硅泊松比和测得的薄膜厚度应变预测的。该模型对于指导薄膜中孔材料的结构设计可能是通用的。 (c)2005 Elsevier B.V.保留所有权利。

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