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Synthesis of Nanomaterials in Highly Swollen Liquid Crystals

机译:高溶胀液晶中纳米材料的合成

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Highly Swollen Liquid Crystals (SLC) that exhibit hexagonal, cubic or lamellar symmetry have been demonstrated to form a new type of soft nanoreactors. These mesophases are formed by a quaternary mixture combining a surfactant, an aqueous solution of inorganic salt, cyclohexane as a hydrophobic swelling solvent and pentanol-1 as a co-surfactant. Unlike previous works that used a "nanooasting" approach in a binary liquid crystal, the composition of these SLC allows syntheses to be proceeded inside the aqueous and/or the organic phase. Therefore inorganic, metallic or organic materials can be prepared and the geometry of the SLC controls the final shape of the prepared by this approach. We will describe various materials that were obtained by different processes in these SLCs: rod-like nanoaggregates of metal nanoparticles were synthesized by chemical reduction in the aqueous part of the hexagonal mesophase, microrods of zirconia were obtained by slow crystallogenesis from hydrated zirconium oxychloride, mesoporous zirconia was prepared by a faster hydrolysis and polymer micro- and nano-fibers were obtained in the organic phase by photopolymerization or radiolysis. We will show how the changernents in the SLC structure can modify the structure of the compounds synthesized inside and that this system constitutes a quite universal medium for the preparation of nanomaterials or nanostructwed systems.
机译:已经证明了表现出六边形,立方体或层状对称性的高溶胀液晶(SLC)以形成一种新型的软纳米反应器。这些中间酶通过组合表面活性剂,无机盐水溶液,环己烷作为疏水性溶胀溶剂和戊醇-1作为共表面活性剂的季蛋白酶形成。与在二元液晶中使用“纳米峰”方法的先前作品不同,这些SLC的组成允许在水性和/或有机相中进行合成。因此,可以制备无机,金属或有机材料,并且SLC的几何形状通过该方法控制制备的最终形状。我们将描述通过这些SLC中的不同方法获得的各种材料:通过六边形中间相的水性部分的化学降低合成金属纳米颗粒的棒状纳米聚集,通过从氯氧化锆的缓慢结晶,氧化锆的微孔,介孔通过光聚合或放射性地通过光聚合或放射性在有机相中得到更快的水解和纳米纤维制备氧化锆。我们将展示SLC结构中的柔和元可以如何改变内部合成的化合物的结构,并且该系统构成了用于制备纳米材料或纳米间系统的相当万常培养基。

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