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Complex liquid-crystal nanostructures in semiflexible ABC linear triblock copolymers: A self-consistent field theory

机译:半柔性ABC线性三嵌段共聚物中的复杂液晶纳米结构:自洽场理论

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摘要

We show that two series of ABC linear triblock copolymers possess sequences of order-to-order phase transitions between microphase-separated states, as the degree of flexibility of the semiflexible middle B-blocks varies. The spatial and orientational symmetries of these phases, some of them containing liquid-crystal ordering, are analysed in comparison with related structures previously determined experimentally and theoretically. A theoretical framework based on the self-consistent field treatment of the wormlike-chain model, which incorporates the Flory-Huggins and Maier-Saupe interactions in the free energy, is used here as a basic foundation for numerical calculations. We suggest that tuning the flexibility parameter, which reduces to the concept of degree of polymerization in the coil-like limit and characterizes the chain-persistency in the rod-like limit, provides a promising approach that can be used to design the resulting microphase-separated structures in semiflexible copolymer melts. Published by AIP Publishing.
机译:我们显示,随着半柔性中间B嵌段的柔性程度变化,两个系列的ABC线性三嵌段共聚物拥有微相分离状态之间的有序相变序列。与先前通过实验和理论确定的相关结构相比,分析了这些相的空间和取向对称性,其中一些包含液晶有序性。在此基础上,将基于蠕虫链模型的自洽场处理的理论框架纳入了自由能中的Flory-Huggins和Maier-Saupe相互作用,以此作为数值计算的基础。我们建议,调整柔韧性参数可以减少线圈状极限聚合度的概念,并可以表征棒状极限的链持久性,这提供了一种有前途的方法,可用于设计最终的微相-半柔性共聚物熔体中的分离结构。由AIP Publishing发布。

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