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首页> 外文期刊>Journal of the American Chemical Society >Control of mesoporous silica nanostructures and pore-architectures using a thickener and a gelator
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Control of mesoporous silica nanostructures and pore-architectures using a thickener and a gelator

机译:使用增稠剂和胶凝剂控制介孔二氧化硅纳米结构和孔结构

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A chiral cationic thickener l-ValPyBr, which was able to enhance the viscosity of water and form loosely physical gel in mixtures of water and alcohols, was synthesized. Sol-gel polymerization of TEOS was carried out in mixtures of water and alcohols under basic conditions using the self-assemblies of l-ValPyBr as template. The left-handed twisted mesoporous silica nanoribbons, which were constructed by nanotubes in monolayer, were obtained, and they tended to self-assemble into bundle structure. Stirring under the preparation process played an important role in the formation of this bundle structure. The obtained silica nanoribbons were uniform in width, thickness, and helical pitch without combining amorphous particles. The helical pitch and pore size of the mesoporous silica nanoribbons sensitively depended on the volume ratio of alcohols to water in the reaction mixtures. With increasing volume ratio of alcohols to water in the reaction mixture, the morphologies of the obtained silica changed from left-handed twisted ribbon to coiled ribbon, then to tubular structure. A compound l-ValPyPF(6), structurally related to thickener l-ValPyBr, was able to form physical gel in ethanol, THF, acetonitrile, and the mixtures of ethanol and water. Left-handed multiple helical mesoporous silica nanofibers were prepared by using the self-assemblies of l-ValPyPF(6) as template in mixtures of water and alcohols under basic conditions. By controlling both the volume ratio of ethanol to water and the weight ratio of l-ValPyPF(6) to TEOS, two- or three-dimensional pore-architecture constructed by porous chiral nanotubes was obtained.
机译:合成了一种手性阳离子增稠剂l-ValPyBr,它能够提高水的粘度并在水和醇的混合物中形成松散的物理凝胶。 TEOS的溶胶-凝胶聚合反应是在碱性条件下,以l-ValPyBr的自组装为模板,在水和醇的混合物中进行的。得到了由纳米管单层构造的左旋介孔二氧化硅纳米带,它们倾向于自组装成束结构。在制备过程中搅拌在该束结构的形成中起重要作用。所获得的二氧化硅纳米带的宽度,厚度和螺旋间距均一,而没有结合无定形颗粒。介孔二氧化硅纳米带的螺距和孔径敏感地取决于反应混合物中醇与水的体积比。随着反应混合物中醇与水的体积比增加,所获得的二氧化硅的形态从左旋扭曲带变为盘绕带,然后变为管状结构。与增稠剂l-ValPyBr结构相关的化合物1-ValPyPF(6)能够在乙醇,THF,乙腈以及乙醇和水的混合物中形成物理凝胶。通过使用l-ValPyPF(6)的自组装作为模板在碱性条件下在水和醇的混合物中制备左旋多螺旋介孔二氧化硅纳米纤维。通过控制乙醇与水的体积比以及l-ValPyPF(6)与TEOS的重量比,可以获得由多孔手性纳米管构成的二维或三维孔结构。

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