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Fabrication of the Tricontinuous Mesoporous IBN-9 Structure with Surfactant CTAB

机译:表面活性剂CTAB制备三连续介孔IBN-9结构

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摘要

IBN-9 is the first tricontinuous mesoporous material, consisting of three identical interpenetrating channels that are separated by a single continuous silica wall. It was originally synthesized using a specially designed surfactant as template. The need of special surfactant in the synthesis inhibits extensive investigation of this novel structure and its applications. We demonstrate in this study that such a complicated tricontinuous mesostructure can also be fabricated from the most common and commercially available surfactant cetyltrimethylammonium bromide (CTAB) with the help of polar organic additives, e.g., n-butanol. The role of n-butanol is to finely tune the surface curvature of the organic/inorganic interface during the cooperative self-assembly process. Electron microscopic techniques are employed to identify different mesostructures from the mixture. This study reveals the possibility of discovering unprecedented mesostructures from conventional surfactant-water-silicates systems.
机译:IBN-9是第一种三连续中孔材料,由三个相同的互穿通道组成,这些通道由一个连续的二氧化硅壁隔开。它最初是使用特殊设计的表面活性剂作为模板合成的。合成中特殊表面活性剂的需求阻碍了对该新型结构及其应用的广泛研究。我们在这项研究中证明,在极性有机添加剂(例如正丁醇)的帮助下,也可以由最常见和可商购的表面活性剂十六烷基三甲基溴化铵(CTAB)制造这种复杂的三连续介观结构。正丁醇的作用是在协同自组装过程中微调有机/无机界面的表面曲率。采用电子显微镜技术从混合物中鉴定出不同的介观结构。这项研究揭示了从常规表面活性剂-水-硅酸盐体系中发现前所未有的介孔结构的可能性。

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