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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Simulations of the Synthesis of Periodic Mesoporous Silica Phases at High Surfactant Concentrations
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Molecular Simulations of the Synthesis of Periodic Mesoporous Silica Phases at High Surfactant Concentrations

机译:高表面活性剂浓度下周期介孔二氧化硅相合成的分子仿真

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Molecular dynamics simulations of a coarse-grained model are used to study the formation mechanism of periodic mesoporous silica over a wide range of cationic surfactant concentrations. This follows up on an earlier study of systems with low surfactant concentrations. We started by studying the phase diagram of the surfactant-water system and found that our model shows good qualitative agreement with experiments with respect to the surfactant concentrations where various phases appear. We then considered the impact of silicate species upon the morphologies formed. We have found that even in concentrated surfactant systems-in the concentration range where pure surfactant solutions yield a liquid crystal phase-the liquid-crystal templating mechanism is not viable because the preformed liquid crystal collapses as silica monomers are added into the solution. Upon the addition of silica dimers, a new phase separated hexagonal array is formed. The preformed liquid crystals were found to be unstable in the presence of monomeric silicates. In addition, the silica dimer is found to be essential for mesoscale ordering at both low and high surfactant concentrations. Our results support the view that a cooperative interaction of anionic silica oligomers and cationic surfactants determines the mesostructure formation in the M41S family of materials.
机译:一个粗粒度模型的分子动力学模拟用于研究周期性中孔二氧化硅的形成机理在宽范围的阳离子表面活性剂的浓度。在此之前,上来就用低浓度的表面活性剂系统的早期研究。我们开始通过研究表面活性剂 - 水体系的相图,发现与实验我们的模型显示了良好的定性协议,相对于表面活性剂浓度,其中各个阶段出现。然后,我们考虑的硅酸盐物质的形成时的形貌的影响。我们已发现,甚至在浓缩的表面活性剂体系,在浓度范围,其中纯表面活性剂溶液得到,因为预先形成液晶崩溃二氧化硅单体加入到该溶液中的液晶相的液晶模板机制是不可行的。在添加二氧化硅二聚体,一个新的相分离,形成六边形阵列。预先形成的液晶被发现是在单体硅酸盐的存在下是不稳定的。此外,二氧化硅二聚体发现对于在低尺度排序和高表面活性剂浓度是必不可少的。我们的研究结果支持这样的观点阴离子二氧化硅的低聚物和阳离子表面活性剂的一个合作互动确定在M41S族材料细微结构形成。

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