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Temperature-induced crystallization in concentrated suspensions of multiarm star polymers:A molecular dynamics study

机译:多臂星形聚合物浓缩悬浮液中温度诱导的结晶:分子动力学研究

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In this work,we study temperature-induced crystallization in dense suspensions of multiarm star polymers.This is a continuation of a previous study,which identified and studied the emergence of "glassy" amorphous states,in accordance with experimental observations.We performed molecular dynamics simulations on two types of star polymers:128-arm stars and 64-arm stars dissolved in n-decane in the temperature range of 20-60 deg C.These supramolecules are modeled as "soft spheres" interacting via a theoretically developed potential of mean field.Both systems attain a crystalline structure with the characteristics of a face-centered-cubic (fcc) crystal beyond a certain temperature.Kinetics is sensitive on initial configuration.Interestingly,kinetic trapping in "temporary" energy wells leads to highly crystalline structures,yet less ordered than their genuine equilibrium fcc structure.This complication illustrates the difficulty in reaching the equilibrium state,which is crystalline at high temperatures.A structural analysis of the final conformations is presented.The effect of size dispersity and star functionality of soft spheres on microstructure is also examined.Both factors influence crystallization and their effect is quantified by our study.
机译:在这项工作中,我们研究了多臂星形聚合物致密悬浮液中的温度诱导结晶。这是先前研究的延续,该研究根据实验观察结果鉴定并研究了“玻璃态”非晶态的出现。我们进行了分子动力学对两种星形聚合物的模拟:在20至60摄氏度的温度范围内溶解在正癸烷中的128臂恒星和64臂恒星。这些超分子被建模为“软球”,通过理论上发展的均值潜力相互作用两种系统都具有在一定温度下具有面心立方(fcc)晶体特征的晶体结构。运动学对初始配置敏感。有趣的是,在“临时”能量阱中的动能捕获会导致高度晶体结构,复杂性说明了达到平衡状态的困难,该状态在高温下为结晶状态。给出了最终构象的结构分析,还研究了软球的尺寸分散性和星形功能对微观结构的影响,我们均对影响结晶的两个因素进行了量化。

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