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首页> 外文期刊>Materials Chemistry Frontiers >Imprinting supramolecular chirality on silica from natural triterpenoid-regulated helical ribbons
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Imprinting supramolecular chirality on silica from natural triterpenoid-regulated helical ribbons

机译:印迹超分子手性的硅自然triterpenoid-regulated螺旋丝带

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摘要

Supramolecular chirality has attracted significant attention because of its critical roles in the life and material sciences. In this study, a natural triterpenoid-tailored amphiphilic molecule C4-MOP was designed and synthesized, in which the pyridinium head group was modified on the skeleton of triterpenoid through an alkyl linker. The introduction of pyridinium not only offers a hydrophilic cation to promote the assembly process but also renders itself as the nucleation point to adsorb silica precursors. The results showed that by adjusting the solvent compositions and the concentration of C4-MOP, well-ordered helical nanoribbons with both right- and left-handedness were fabricated by the assembly of C4-MOP, where the hydrophilic pyridinium cations were helically displayed on the surface of ribbons. Subsequently, by taking advantage of electrostatic interactions between pyridinium and the silica precursor, the supramolecular chirality of C4-MOP was successfully imprinted onto the silica nano- structures using the gel–sol mineralization process. Our work provides a simple yet useful strategy to prepare chiral silica, which could promote the applications of chiral natural products in material science.
机译:超分子手性吸引了重要注意,因为其关键作用生活和材料科学。自然triterpenoid-tailored两亲性C4-MOP分子设计和合成吡啶头组的修改通过一个烷基三萜系化合物的骨架链接器。提供了一个亲水性阳离子促进装配过程也呈现自己成核点吸附硅前体。结果表明,通过调整溶剂C4-MOP成分和浓度,秩序井然的螺旋nanoribbons与正确的-和左撇子是捏造的组装C4-MOP,亲水的地方成螺旋形地显示在吡啶阳离子丝带的表面。利用静电相互作用吡啶和硅前体超分子手性的C4-MOP成功地印在二氧化硅纳米-使用gel-sol矿化结构的过程。策略准备手性二氧化硅,这可能促进的应用手性自然产品在材料科学。

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