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Precursor Mediated Synthesis of Nanostructured Silicas: From Precursor-Surfactant Ion Pairs to Structured Materials

机译:前驱体介导的纳米结构二氧化硅的合成:从前体-表面活性剂离子对到结构化材料

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The synthesis of nanostructured anionic-surfactant-templated mesoporous silica (AMS) recently appeared as a new strategy for the formation of nanostructured silica based materials. This method is based on the use of anionic surfactants together with a co-structure-directing agent (CSDA), mostly a silylated ammonium precursor. The presence of this CSDA is necessary in order to create ionic interactions between template and silica forming phases and to ensure sufficient affinity between the two phases. This synthetic strategy was for the first time applied in view of the synthesis of surface functionalized silica bearing ammonium groups and was then extended on the formation of materials functionalized with anionic carboxylate and bifunctional amine-carboxylate groups. In the field of silica hybrid materials, the “anionic templating” strategy has recently been applied for the synthesis of silica hybrid materials from cationic precursors. Starting from di- or oligosilylated imidazolium and ammonium precursors, only template directed hydrolysis-polycondensation reactions involving complementary anionic surfactants allowed accessing structured ionosilica hybrid materials. The mechanistic particularity of this approach resides in the formation of precursor-surfactant ion pairs in the hydrolysis-polycondensation mixture. This review gives a systematic overview over the various types of materials accessed from this cooperative ionic templating approach and highlights the high potential of this original strategy for the formation of nanostructured silica based materials which appears as a complementary strategy to conventional soft templating approaches.
机译:纳米结构的阴离子表面活性剂模板的介孔二氧化硅(AMS)的合成最近出现作为形成纳米结构的二氧化硅基材料的新策略。该方法基于使用阴离子表面活性剂和共结构导向剂(CSDA),主要是甲硅烷基化铵前体。为了在模板和二氧化硅形成相之间产生离子相互作用并确保两相之间具有足够的亲和力,必须存在此CSDA。考虑到具有铵基团的表面官能化二氧化硅的合成,该合成策略是首次应用,然后扩展到形成由阴离子羧酸盐和双官能胺-羧酸盐基团官能化的材料。在二氧化硅杂化材料领域中,“阴离子模板化”策略最近已被用于由阳离子前体合成二氧化硅杂化材料。从二或寡硅烷化的咪唑鎓和铵前体开始,只有涉及互补阴离子表面活性剂的模板指导的水解-缩聚反应才能进入结构化的离子硅杂化材料。该方法的机理上的特殊性在于在水解-缩聚混合物中形成前体-表面活性剂离子对。这篇综述对从这种协同离子模板方法获得的各种材料进行了系统的概述,并强调了这种形成纳米结构二氧化硅基材料的原始策略的巨大潜力,该策略似乎是传统软模板方法的补充策略。

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