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添加剂粒径对聚合物玻璃化转变的非单调影响。

Non-monotonic effect of additive particle size on the glass transition in polymers.

机构信息

Interdisciplinary Centre for Advanced Materials Simulation (ICAMS), Ruhr-Universität Bochum, Universitätsstraße 150, 44801 Bochum, Germany.

出版信息

J Chem Phys. 2019 Jan 14;150(2):024903. doi: 10.1063/1.5063476.

Abstract

Effect of small additive molecules on the structural relaxation of polymer melts is investigated via molecular dynamics simulations. At a constant external pressure and a fixed number concentration of added molecules, the variation of the particle diameter leads to a non-monotonic change of the relaxation dynamics of the polymer melt. For non-entangled chains, this effect is rationalized in terms of an enhanced added-particle-dynamics which competes with a weaker coupling strength upon decreasing the particle size. Interestingly, cooling simulations reveal a non-monotonic effect on the glass transition temperature also for entangled chains, where the effect of additives on polymer dynamics is more intricate. This observation underlines the importance of monomer-scale packing effects on the glass transition in polymers. In view of this fact, size-adaptive thermosensitive core-shell colloids would be a promising candidate route to explore this phenomenon experimentally.

摘要

通过分子动力学模拟研究了小分子添加剂对聚合物熔体结构弛豫的影响。在恒定的外压和固定的添加分子数浓度下,颗粒直径的变化导致聚合物熔体弛豫动力学的非单调变化。对于非缠结链,这种效应可以用增强的添加粒子动力学来解释,该动力学在减小颗粒尺寸时与较弱的耦合强度竞争。有趣的是,对于缠结链,冷却模拟也显示出玻璃化转变温度的非单调效应,其中添加剂对聚合物动力学的影响更为复杂。这一观察结果强调了单体尺度堆积效应对聚合物玻璃化转变的重要性。鉴于这一事实,尺寸自适应热敏核壳胶体将是探索这一现象的一种很有前途的实验候选途径。

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