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Dendritic Growth of Cubically Ordered Nanoporous Materials through Self-Assembly

机译:通过自组装的立方有序的纳米多孔材料的树突生长。

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摘要

Self-assembled nanoporous materials have potential for many applications. Here we report unusual dendritic crystals from self-sassembled nanoporous sillicates and continuous morphological change of such materials through chemical means. We used hybrid organic silane and quaternary ammonium surfactants to prepare large dendritic nanoporous crystals. These self-assembled crystals have a cubic structure (Pm3m), 4-fold symmetry, and are oriented with the <100> direction perpendicular to the surface. Remarkably, the morphology of the crystals can change from highly branched, square-shaped dendrites to less branched structures, to nonbranched croses, and finally to regular compact crystals when the Cl~- counterions on the surfactant were gradually replaced by Br~- while keeping the total surfactant concentration constant. The unusual dendritic crystals and their continuous morphology change suggest the importance to control diffusion and surface reactivity for self-assembled crystal growth under nonequilibrium conditions. The open dendritic nanoporous structures may be useful for sensing and other applications.
机译:自组装纳米多孔材料具有许多应用潜力。在这里,我们报道了自组装的纳米多孔硅酸盐中不寻常的树枝状晶体,以及通过化学方法对此类材料进行了连续的形态变化。我们使用杂化有机硅烷和季铵表面活性剂来制备大的树枝状纳米多孔晶体。这些自组装晶体具有立方结构(Pm3m),4倍对称性,并且以<100>方向垂直于表面定向。值得注意的是,当表面活性剂上的Cl〜-离子逐渐被Br〜-取代时,晶体的形态可以从高度支化的方形枝晶变为少支化的结构,不分支的cros,最后变为规则的致密晶体。表面活性剂总浓度常数。不寻常的树枝状晶体及其连续的形态变化表明,在非平衡条件下,控制扩散和表面反应性对于自组装晶体生长的重要性。开放的树突状纳米孔结构可用于传感和其他应用。

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