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Lattice model of linear telechelic polymer melts. I. Inclusion of chain semiflexibility in the lattice cluster theory

机译:线性远螯聚合物熔体的晶格模型。一,链半柔韧性被包含在晶格簇理论中

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摘要

The lattice cluster theory (LCT) for the thermodynamics of polymer systems has recently been reformulated to treat strongly interacting self-assembling polymers composed of fully flexible linear telechelic chains [J. Dudowicz and K. F. Freed, J. Chem. Phys. 136, 064902 (2012)]. Here, we further extend the LCT for linear telechelic polymer melts to include a description of chain semiflexibility, which is treated by introducing a bending energy penalty whenever a pair of consecutive bonds from a single chain lies along orthogonal directions. An analytical expression for the Helmholtz free energy is derived for the model of semiflexible linear telechelic polymer melts. The extension provides a theoretical tool for investigating the influence of chain stiffness on the thermodynamics of self-assembling telechelic polymers, and for further exploring the influence of self-assembly on glass formation in such systems. (C) 2015 AIP Publishing LLC.
机译:最近,对聚合物体系热力学的晶格簇理论(LCT)进行了重新设计,以处理由完全柔性的线性远螯链组成的相互作用强的自组装聚合物[J. Dudowicz和K.F. Freed,《化学杂志》物理136,064902(2012)]。在这里,我们进一步扩展了线性远螯聚合物熔体的LCT,以包括链半柔韧性的描述,只要来自一条单链的一对连续键沿正交方向引入弯曲能量损失,就可以对其进行处理。推导了半柔性线性远螯聚合物熔体模型的亥姆霍兹自由能的解析表达式。该扩展提供了一种理论工具,可用于研究链刚度对自组装远螯聚合物热力学的影响,并进一步探索在此类系统中自组装对玻璃形成的影响。 (C)2015 AIP Publishing LLC。

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