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Molecular simulation of silica/surfactant self-assembly in the synthesis of periodic mesoporous silicas

机译:周期性介孔二氧化硅合成中二氧化硅/表面活性剂自组装的分子模拟

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摘要

Understanding the synthesis of periodic mesoporous silica (PMS) is crucial for a more efficient use of these materials and is a necessary first step toward a rational design strategy for the templated synthesis of porous solids. In this paper, the early stages of the synthesis process of PMS materials are simulated directly by molecular dynamics, using realistic atomistic models. It is the first time that such computationally demanding calculations have been attempted. By comparing the self-assembly of cationic surfactants in the presence and absence of silicates, we are able to show that silica promotes the formation of larger aggregates than in a simple surfactant/water solution. The formation of these larger micelles is explained by a strong interaction of the silicate molecules with the surfactant head groups. This strong interaction increases the local concentration of silica at the surface of the micelles, which induces the formation of more condensed silicate species. The surfactant/silica structures observed here are potentially important intermediates in PMS synthesis.
机译:了解周期性介孔二氧化硅(PMS)的合成对于更有效地使用这些材料至关重要,并且是朝着合理设计多孔固体模板化合成策略的必不可少的第一步。在本文中,使用逼真的原子模型,通过分子动力学直接模拟了PMS材料合成过程的早期阶段。这是第一次尝试进行这种计算量大的计算。通过比较在存在和不存在硅酸盐的情况下阳离子表面活性剂的自组装,我们能够证明,与在简单的表面活性剂/水溶液中相比,二氧化硅可以促进形成更大的聚集体。这些较大的胶束的形成可以通过硅酸盐分子与表面活性剂头基的强烈相互作用来解释。这种强相互作用增加了胶束表面二氧化硅的局部浓度,从而诱导了更多缩合的硅酸盐物质的形成。此处观察到的表面活性剂/二氧化硅结构是PMS合成中潜在的重要中间体。

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