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首页> 外文期刊>Journal of Physics. Condensed Matter >Evolution of structural dimensions in mesoporous template precursor from hexagonal lyotropic liquid crystals
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Evolution of structural dimensions in mesoporous template precursor from hexagonal lyotropic liquid crystals

机译:六角性溶液液晶中介孔模板前体结构尺寸的演变

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Producing nanopores from hexagonal lyotropic liquid crystals (LLCs) templates requires not only retaining phase morphology of the templates but also precisely controlling structural dimensions of unit cells. In this study, SAXS and H-2 NMR are used to investigate dimensional evolutions of ternary systems consisting of polymerizable species, (ethylene glycol) diacrylate (PEGDA) and/or 2-hydroxyethyl methacrylate (HEMA), in a LLCs template of hexagonally packed cylinders formed from dodecyl trimethylammonium bromide (DTAB) and water. With the addition of those polymerizable species, the system rearranges into a new hexagonal system with a smaller aggregation number, smaller pores and a thicker pore wall thickness. The hexagonal system will coexist with an aqueous-rich phase containing isotropically distributed DTAB if sufficient PEGDA is applied but the single hexagonal system could be restored by partially replacing the PEGDA with HEMA. The mobility of DTAB molecules within the aggregates varies depending on monomer compositions. The changes in structural dimensions of the unit cells and phase behaviors after adding polymerizable monomers allow dimensional control of mesochannels and potentially enable the control of selectivity and robustness of polymerized nanomaterials via molecular design.
机译:从六方调调液晶产生纳米孔(LLC)模板不仅需要保持模板的相位形态,而且需要精确地控制单位细胞的结构尺寸。在该研究中,SAX和H-2 NMR用于研究由可聚合物种(乙二醇)二丙烯酸酯(PEGDA)和/或2-羟乙基甲酸甲酯(HEMA)组成的三元系统的尺寸演化,其在六角包装的LLC模板中由十二烷基三甲基溴化铵(DTAB)和水形成的圆柱体。随着这些聚合物种的添加,系统重新排列到具有较小聚集数,孔隙和厚度孔厚度较小的孔隙率的新六边形系统中。如果施加足够的PEGDA,则六边形系统将与含有各向同性分布的DTAB的富含类同向分布的含水相的阶段共存,但是通过部分替代PEGDA,可以通过HEMA部分替换单一六方体系。聚集体内的DTAB分子的迁移率根据单体组合物而变化。在加入聚合单体之后,单位细胞和相行为的结构尺寸的变化允许Mesochneln的尺寸控制,并可能通过分子设计控制聚合纳米材料的选择性和鲁棒性。

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