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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >A One-Pot Polymerization for Concurrently Inducing Predominant Helicity in Optically Inactive Helical Polymer and Constructing Graphene-Based Chiral Hybrid Foams
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A One-Pot Polymerization for Concurrently Inducing Predominant Helicity in Optically Inactive Helical Polymer and Constructing Graphene-Based Chiral Hybrid Foams

机译:用于在光学无活性螺旋聚合物中同时诱导主要螺旋的单壶聚合,构建基于石墨烯的手性杂交泡沫

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Synthetic chiral helical polymers have achieved impressive progress in past few decades. Unfortunately, how to construct chiral helical polymer- derived functional materials still remains highly challenging. The present contribution reports an unprecedented, one-step strategy for judiciously combining chiral helical polymer with graphene to construct chiral hybrid foams. Graphene oxide (GO), ascorbic acid (L-AA), Rh catalyst, and an achiral acetylenic monomer bearing phenylboronic acid group are mixed in an aqueous dispersion. Under mild conditions, the monomer underwent polymerization; meanwhile GO transforms into reduced graphene oxide (RGO) which in situ self-assembles to construct a 3D porous structure. Herein, L-AA simultaneously plays double roles: 1) working as a chiral source for the monomer to undergo helix-sense-selective polymerization or transferring its chirality to the polymer chains via forming borate structure; and 2) working as a reducing agent for reducing GO. The preparation strategy combines four processes into one single step: monomer polymerization, chirality transfer, reduction of GO, and RGO's self-assembly. The eventually obtained chiral hybrid foams demonstrate advantages of porous structure, chirality, and reversible borate functional groups. The established preparation strategy promises a potent platform for conveniently constructing advanced chiral polymeric materials and even chiral hybrids starting from achiral monomers.
机译:合成手性螺旋聚合物在过去几十年中取得了令人印象深刻的进展。不幸的是,如何构建手性螺旋聚合物衍生的功能材料仍然仍然具有高度挑战性。目前的贡献报告了一个前所未有的一步的一步策略,可与石墨烯明显地结合手性螺旋聚合物以构建手性杂交泡沫。将亚抗坏血酸(L-AA),RH催化剂和载体亚乙酰丙烯酸组含有苯硼酸基团的石墨烯(GO),在水分散体中混合。在温和条件下,单体接受聚合;同时,转化为石墨烯(RGO),其原位自组装以构建3D多孔结构。在此,L-AA同时发挥双重作用:1)作为单体的手性源,以经过螺旋感选择聚合或通过形成硼酸盐结构将其性肾上腺转移到聚合物链中; 2)作为减少转让的还原剂。制备策略将四个过程结合为单一步骤:单体聚合,手性转移,降低,以及RGO的自组装。最终获得的手性杂交泡沫表明了多孔结构,手性和可逆硼酸族官能团的优点。建立的制备策略承诺有效的平台,用于方便地构建高级手性聚合物材料甚至从服从的单体开始的手性杂交种。

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