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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Kinetics of the Formation of 2D-Hexagonal Silica Nanostructured Materials by Nonionic Block Copolymer Templating in Solution
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Kinetics of the Formation of 2D-Hexagonal Silica Nanostructured Materials by Nonionic Block Copolymer Templating in Solution

机译:非离子嵌段共聚物在溶液中模板化制备二维六角形二氧化硅纳米结构材料的动力学

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摘要

The different steps of the self-assembly in solution of several 2D-hexagonal silica nanostructured SBA-15 materials have been investigated by SAXS and SANS in situ experiments. Unique quantitative information about the shape and size evolution upon time of the micellar aggregates throughout the self-assembly process is obtained using a complete model that describes well the scattering data for the various synthesis conditions. In all cases, before the precipitation of the material, the micelles shape changes from spherical to rod-like, where the structure of the rod-like micelles is linked to the structure of the 2D-hexagonal precipitated material. In addition, the kinetics of hydrolysis of the inorganic precursor (TEOS) has been determined by in situ Raman spectroscopy. More specifically, by comparing synthesis made with different acids (HNO3, HBr, HCl, H2SO4, and H3PO4), it is found that materials prepared using the "salting-out" anions (SO4~(2-) and H2PO4~- ) are much better ordered than with the "salting-in" anions (NQ3~- and Br~- ).
机译:通过SAXS和SANS原位实验研究了几种2D-六边形二氧化硅纳米结构的SBA-15材料在溶液中自组装的不同步骤。使用完整的模型可以获得有关整个自组装过程中胶束聚集体随时间变化的形状和尺寸演变的独特定量信息,该模型很好地描述了各种合成条件下的散射数据。在所有情况下,在材料沉淀之前,胶束形状从球形变为棒状,其中棒状胶束的结构与2D六边形沉淀材料的结构相关。另外,无机前体(TEOS)的水解动力学已经通过原位拉曼光谱法确定。更具体地,通过比较由不同酸(HNO 3,HBr,HCl,H 2 SO 4和H 3 PO 4)进行的合成,发现使用“盐析”阴离子(SO 4-(2-)和H 2 PO 4-)制备的材料为与“盐化”阴离子(NQ3〜-和Br〜-)相比,有序排列要好得多。

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