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Thermal-induced phase transitions in self-assembled mesostructured films studied by small-angle X-ray scattering

机译:小角度X射线散射研究自组装介观结构薄膜中的热诱导相变

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摘要

Two examples of phase transition in self- assembled mesostructured hybrid thin films are reported. The materials have been synthesized using tetraethoxysilane as the silica source hydrolyzed with or without the addition of methyltriethoxysilane. The combined use of transmission electron microscopy, small- angle X- ray scattering and computer simulation has been introduced to achieve a clear identification of the organized phases. A structural study of the self- assembled mesophases as a function of thermal treatment has allowed the overall phase transition to be followed. The initial symmetries of mesophases in as- deposited films have been linked to those observed in samples after thermal treatment. The monodimensional shrinkage of silica films during calcination has induced a phase transition from face- centered orthorhombic to body- centered cubic. In hybrid films, instead, the phase transition has not involved a change in the unit cell but a contraction of the cell parameter normal to the substrate.
机译:自组装的介观结构的混合薄膜中有两个相变的例子。该材料是使用四乙氧基硅烷作为二氧化硅源,在添加或不添加甲基三乙氧基硅烷的情况下进行水解而合成的。已经引入了透射电子显微镜,小角度X射线散射和计算机模拟的结合使用,以清晰地识别组织相。对自组装中间相作为热处理功能的结构研究,使得可以追踪整个相变。沉积膜中间相的初始对称性与热处理后样品中观察到的对称性有关。煅烧过程中二氧化硅膜的一维收缩已引起从面心正交斜晶到体心立方的相变。相反,在混合膜中,相变不涉及单位晶胞的变化,而是涉及垂直于基底的晶胞参数的收缩。

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