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Efficient Synthesis of Cyclic Block Copolymers by Rotaxane Protocol by Linear/Cyclic Topology Transformation

机译:轮烷协议通过线性/环状拓扑转化高效合成环嵌段共聚物

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摘要

High-yielding synthesis of cyclic block copolymer (CBC) using the rotaxane protocol by linear-cyclic polymer topology transformation was first demonstrated. Initial complexation of OH-terminated sec-ammonium salt and a crown ether was followed by the successive living ring-opening polymerizations of two lactones to a linear block copolymer having a rotaxane structure by the final capping of the propagation end. CBC was obtained in a high yield by an exploitation of the mechanical linkage through the translational movement of the rotaxane component to transform polymer structure from linear to cyclic. Furthermore, the change of the polymer topology was translated into a macroscopic change in crystallinity of the block copolymer.
机译:首先证明了使用轮烷方法通过线性-环状聚合物拓扑变换高产率合成环状嵌段共聚物(CBC)。 OH-封端的仲铵盐和冠醚的初始络合,随后是两个内酯的连续活性开环聚合反应,最终通过繁殖末端的封端,形成具有轮烷结构的线性嵌段共聚物。通过利用机械连接通过轮烷组分的平移运动将聚合物结构从线性转变为环状,从而以高收率获得了CBC。此外,聚合物拓扑的变化转化为嵌段共聚物结晶度的宏观变化。

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