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首页> 外文期刊>Chemical record >Evaporation-induced Self-assembly Process Controlled for Obtaining Highly Ordered Mesoporous Materials with Demanded Morphologies
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Evaporation-induced Self-assembly Process Controlled for Obtaining Highly Ordered Mesoporous Materials with Demanded Morphologies

机译:蒸发诱导自组装过程的控制,以获取具有所需形貌的高度有序的介孔材料

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摘要

A large number of periodic mesoporous materials have been reported using amphiphilic organic molecules with increasing development of synthetic methods for mesostructural, morphological, and compositional designs. The evaporation-induced self-assembly (ESIA) process to fabricate ordered mesoporous films is one of the most essential synthetic methods, which has extensively been applied for obtaining a wide variety of samples (e.g., films and monoliths, including powders). It contains complicated physical variations and chemical reactions, but has been simply explained by several research groups. However, a current, exact understanding of such complicated systems should be given with respect to all the variations and reactions. In this article, I have mainly surveyed the exact EISA process by considering the difference between simple and controlled EISA processes on the basis of my own experiments. I believe that the insights are consequently helpful for obtaining highly ordered mesoporous materials with demanded morphologies.
机译:据报道,使用两亲性有机分子的大量周期性介孔材料随着介观结构,形态和成分设计的合成方法的发展而发展。蒸发诱导自组装(ESIA)工艺制造有序的中孔膜是最基本的合成方法之一,已广泛应用于获得各种样品(例如膜和整料,包括粉末)。它包含复杂的物理变化和化学反应,但已被多个研究小组简单解释。但是,应就所有变化和反应给出对这种复杂系统的当前的准确理解。在本文中,我主要根据自己的实验,通过考虑简单和受控EISA过程之间的差异来调查EISA的确切过程。我相信,这些见解因此有助于获得具有所需形态的高度有序的介孔材料。

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