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首页> 外文期刊>Bulletin of the Korean Chemical Society >Design of Mesoporous Silica at Low Acid Concentrations in Triblock Copolymer-Butanol-Water Systems
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Design of Mesoporous Silica at Low Acid Concentrations in Triblock Copolymer-Butanol-Water Systems

机译:三嵌段共聚物-丁醇-水体系中低酸浓度下介孔二氧化硅的设计

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Assembly of hybrid mesophases through the combination of amphiphilic block copolymers, acting as structuredirecting agents, and silicon sources using low acid catalyst concentration regimes is a versatile strategy to produce large quantities of high-quality ordered large-pore mesoporous silicas in a very reproducible manner. Controlling structural and textural properties is proven to be straightforward at low HCl concentrations with the adjustment of synthesis gel composition and the option of adding co-structure-directing molecules. In this account, we illustrate how various types of large-pore mesoporous silica can easily be prepared in high phase purity with tailored pore dimensions and tailored level of framework interconnectivity. Silica mesophases with two-dimensional hexagonal (p6mm) and three-dimensional cubic (Fm3 m, Im3 m and Ia3 d) symmetries are generated in aqueous solution by employing HCl concentrations in the range of 0.1?0.5 M and polyalkylene oxide-based triblock copolymers such as Pluronic P123 (EO20-PO70-EO20) and Pluronic F127 (EO106-PO70-EO106). Characterizations by powder X-ray diffraction, nitrogen physisorption, and transmission electron microscopy show that the mesoporous materials all possess high specific surface areas, high pore volumes and readily tunable pore diameters in narrow distribution of sizes ranging from 4 to 12 nm. Furthermore, we discuss our recent advances achieved in order to extend widely the phase domains in which single mesostructures are formed. Emphasis is put on the first synthetic product phase diagrams obtained in SiO2-triblock copolymer- BuOH-H2O systems, with tuning amounts of butanol and silica source correspondingly. It is expected that the extended phase domains will allow designed synthesis of mesoporous silicas with targeted characteristics, offering vast prospects for future applications.
机译:通过两亲性嵌段共聚物(充当结构导向剂)和硅源的组合,使用低酸催化剂浓度机制来组装杂化中间相,是一种以非常可重复的方式生产大量高质量有序大孔介孔二氧化硅的通用策略。事实证明,在低HCl浓度下,通过调节合成凝胶的组成以及添加共构结构分子的选择,即可轻松控制结构和质地。因此,我们说明了如何轻松地以定制的孔尺寸和定制的骨架互连水平,以高相纯度轻松制备各种类型的大孔介孔二氧化硅。通过使用0.1?​​0.5 M范围内的HCl浓度和基于聚环氧烷的三嵌段共聚物在水溶液中生成具有二维六边形(p6mm)和三维立方(Fm3 m,Im3 m和Ia3 d)对称性的二氧化硅中间相例如Pluronic P123(EO20-PO70-EO20)和Pluronic F127(EO106-PO70-EO106)。通过粉末X射线衍射,氮的物理吸附和透射电子显微镜的表征表明,介孔材料均具有高的比表面积,高的孔容和易于调节的孔径,其孔径分布范围为4至12nm。此外,我们讨论了我们最近取得的进展,以便广泛地扩展形成单个介观结构的相域。重点放在在SiO2-三嵌段共聚物-BuOH-H2O体系中获得的第一合成产物相图上,相应地调整了丁醇和二氧化硅的来源。预期扩展相域将允许设计合成具有目标特性的介孔二氧化硅,为未来的应用提供广阔的前景。

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