首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Origin of Miscibility-Induced Sequential Reordering and Crystallization-Induced Sequential Reordering in Binary Copoyesters: A Monte Carlo Simulation
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Origin of Miscibility-Induced Sequential Reordering and Crystallization-Induced Sequential Reordering in Binary Copoyesters: A Monte Carlo Simulation

机译:二元共聚酯中混溶性诱导的顺序重排和结晶诱导的顺序重排的起源:蒙特卡洛模拟

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摘要

The effect of the repulsive interaction between the components of binary copolyesters on their sequence order was investigated with the Monte Carlo simulation method. The phase separation and ester-interchange reactions were implemented simultaneously with a kind of one-site bond fluctuation model. When the repulsive interaction energy was applied to the binary copolyesters, miscibility-induced sequen- tial reordering (MISR) was induced. The more repulsive the pair interaction was, the higher the sequence order was. During the MISR process, homoester-interchange reactions became more favorable because of the repulsive interaction, accompanying the decrease of the interactional free energy. The sequence order resulting from MISR was independent of the relative trial ratio of phase separation to ester-interchange reaction at a given value of interaction energy. Restoration of the sequence distribution was also simulated with and without the repulsive interaction between the components of the binary copolyesters to investigate the effect of MISR on the crystallization- induced sequential reordering (CISR) process in binary copolyesters, where sequences with lengths longer than 6 were assumed to crystallize and could not take part in ester-interchange reactions. The sequence distribution in the amorphous phase was restored via ester-interchange reactions. When the repulsive interaction was applied to binary copolyesters during the CISR process, restoration of the sequence distribution was accelerated, indicating that MISR can accelerate the CISR process when a poly- ester blend shows upper critical solution temperature behavior.
机译:用蒙特卡罗模拟方法研究了二元共聚酯组分之间的排斥相互作用对其序列顺序的影响。利用一种单中心键涨落模型同时进行了相分离和酯交换反应。当斥力相互作用能加到二元共聚酯上时,就引起了相溶性顺序重排(MISR)。配对相互作用的排斥性越强,序列顺序就越高。在MISR过程中,由于排斥相互作用,伴随着相互作用自由能的降低,均酸酯交换反应变得更加有利。在给定的相互作用能值下,MISR产生的序列顺序与相分离与酯交换反应的相对试验比率无关。在有和没有二元共聚酯成分之间存在排斥相互作用的情况下,还模拟了序列分布的恢复,以研究MISR对二元共聚酯中结晶诱导的顺序重排(CISR)过程的影响,其中长度大于6的序列为被认为是结晶的,不能参与酯交换反应。通过酯交换反应恢复了非晶相中的序列分布。当在CISR过程中将排斥相互作用应用于二元共聚酯时,序列分布的恢复被加速,这表明当聚酯共混物显示出较高的临界溶液温度行为时,MISR可以加速CISR过程。

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