首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Elaboration of Monodisperse Spherical Hollow Particles with Ordered Mesoporous Silica Shells via Dual Latex/Surfactant Templating: Radial Orientation of Mesopore Channels
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Elaboration of Monodisperse Spherical Hollow Particles with Ordered Mesoporous Silica Shells via Dual Latex/Surfactant Templating: Radial Orientation of Mesopore Channels

机译:通过双胶乳/表面活性剂模板制备有序介孔二氧化硅壳的单分散球形空心颗粒:介孔通道的径向取向

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Monodisperse spherical hollow nanoparticles of mesoporous silica featuring mesopores with a radial orientation in the silica shell were synthesized via a dual-templating method. Specifically designed polystyrene latexes with anionic or cationic surface charges acted as the core templates, while cetyltrimethylammonium bromide served as a co-template to structure the mesopore formation during tetraethoxysilane hydrolysis/condensation. The particles were well-separated and presented homogeneous mesoporous silica shells. Average particle diameters were less than 200 nm, and the particles displayed high values of specific surface area and pore volume. The shell thickness and the hollow core diameter could be tuned independently while the radial pore structure was preserved. A detailed analysis of the nitrogen adsorption-desorption isotherms proved that the central cavity was completely isolated from the external medium, that is, only accessible through the radial mesopores of the shell. Consequently, our particles gather the advantages of a well-defined structure, straight penetrating channels across the silica shell, and a high accessible porous volume of the central core. These properties make them far better candidates than simple mesoporous particles for any storage and/or controlled release applications.
机译:通过双模板法合成了介孔二氧化硅的单分散球形空心纳米粒子,其特征在于在二氧化硅壳中具有径向取向的中孔。特别设计的带有阴离子或阳离子表面电荷的聚苯乙烯胶乳充当核心模板,而十六烷基三甲基溴化铵充当共同模板在四乙氧基硅烷水解/缩合过程中形成中孔结构。颗粒被很好地分离并呈现均匀的介孔二氧化硅壳。平均粒径小于200nm,并且颗粒显示出高的比表面积和孔体积值。在保持径向孔结构的同时,壳厚度和空心直径可以独立调整。对氮吸附-解吸等温线的详细分析证明,中心腔与外部介质完全隔离,也就是说,只能通过壳的径向中孔进入。因此,我们的颗粒具有以下优点:结构清晰,贯穿硅胶壳的直通通道以及中心核的高孔隙率。对于任何存储和/或控释应用,这些特性使它们比简单的中孔颗粒更好地成为候选材料。

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