首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Molecular design of the surfactant and the co-structure-directing agent(CSDA)toward rational synthesis of targeted anionic surfactant templated mesoporous silica
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Molecular design of the surfactant and the co-structure-directing agent(CSDA)toward rational synthesis of targeted anionic surfactant templated mesoporous silica

机译:表面活性剂和共结构导向剂(CSDA)的分子设计,用于目标阴离子表面活性剂模板介孔二氧化硅的合理合成

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The formation of anionic surfactant templated mesoporous silica(AMS)is investigated from the perspective of the geometrical molecular design of the surfactant and the co-structure-directing agent(CSDA)toward the rational synthesis of the targeted mesostructure.Increasing the geometrical size of two types of head group of the anionic surfactant in the order(i)sulfonate,sulfate and phosphate,and(ii)carboxylate,N-acylalanate/N-acylglycinate and N-acylglutamate,resulted in the mesophase changing from a disordered or lamellar phase to two-dimensional(2D)hexagonal(p6mm)and three-dimensional(3D)cage-type(hexagonal and a modulated cubic phase)with increasing order of the organic/inorganic interface curvature.A change in the chain length of the surfactant also led to different surfactant packing and mesophase interfacial curvatures,and resulted in a change in mesophase from a modulated cage-type mesophase to cubic Fd3m,cubic Pm3n and a disordered cage-type mesophase.The geometrical change in the CSDA resulted in an increasing micellar curvature in the order:aminopropyl < N-methylamino-propyl < iV,N-dimethylaminopropyl trimethoxysilane,which led to a change of mesophase from bicontinuous cubic Pn3m to 2D-hexagonal p6mm.An increase in the CSDA/surfactant ratio in the synthesis gave rise to the mesophase change from a disordered cage-type mesophase to cubic Fm3m or from lamellar to 2D-hexagonal p6mm,and elemental analysis results showed that the mesoporous silicas have an increased loading of organic moieties using the CSDA method.
机译:从表面活性剂的几何分子设计和共结构导向剂(CSDA)的角度研究了阴离子表面活性剂模板介孔二氧化硅(AMS)的形成,从而合理合成了目标介孔结构。阴离子表面活性剂的头基类型(i)为磺酸盐,硫酸盐和磷酸盐,以及(ii)羧酸盐,N-酰基丙酸酯/ N-酰基甘氨酸盐和N-酰基谷氨酸,其中间相从无序或层状转变为二维(2D)六角形(p6mm)和三维(3D)笼型(六角形和调制立方相),其有机/无机界面曲率的顺序增加。表面活性剂链长的变化也导致了到不同的表面活性剂堆积和中间相界面曲率,导致中间相从调制的笼型中间相变为立方Fd3m,立方Pm3n和无序的笼型中间相。 e CSDA导致胶束曲率按以下顺序增加:氨基丙基

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