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Crystal Fivefold and Glass Formation in Clusters of Polymers Interacting with the Square Well Potential

机译:与方阱势相互作用的聚合物簇中的晶体五倍和玻璃形成

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摘要

We present results, from Monte Carlo (MC) simulations, on polymer systems of freely jointed chains with spherical monomers interacting through the square well potential. Starting from athermal packings of chains of tangent hard spheres, we activate the square well potential under constant volume and temperature corresponding effectively to instantaneous quenching. We investigate how the intensity and range of pair-wise interactions affected the final morphologies by fixing polymer characteristics such as average chain length and tolerance in bond gaps. Due to attraction chains are brought closer together and they form clusters with distinct morphologies. A wide variety of structures is obtained as the model parameters are systematically varied: weak interactions lead to purely amorphous clusters followed by well-ordered ones. The latter include the whole spectrum of crystal morphologies: from virtually perfect hexagonal close packed (HCP) and face centered cubic (FCC) crystals, to random hexagonal close packed layers of single stacking direction of alternating HCP and FCC layers, to structures of mixed HCP/FCC character with multiple stacking directions and defects in the form of twins. Once critical values of interaction are met, fivefold-rich glassy clusters are formed. We discuss the similarities and differences between energy-driven crystal nucleation in thermal polymer systems as opposed to entropy-driven phase transition in athermal polymer packings. We further calculate the local density of each site, its dependence on the distance from the center of the cluster and its correlation with the crystallographic characteristics of the local environment. The short- and long-range conformations of chains are analyzed as a function of the established cluster morphologies.
机译:我们从蒙特卡洛(MC)模拟中得出的结果是,自由连接链与球形单体通过方阱势相互作用的聚合物体系。从切线硬球链的无热堆积开始,我们在恒定体积和温度下激活方阱势,有效地对应于瞬时淬灭。我们研究了成对相互作用的强度和范围如何通过固定聚合物特性(例如平均链长和键合间隙的耐受性)影响最终形态。由于吸引链更加紧密,它们形成了形态各异的簇。随着模型参数的系统变化,获得了各种各样的结构:弱相互作用导致纯无定形簇,然后是有序簇。后者包括整个晶体形态:从几乎完美的六边形密堆积(HCP)和面心立方(FCC)晶体,到交替的HCP和FCC层的单堆叠方向的随机六边形密堆积层,以及混合HCP的结构/ FCC字符具有多个堆叠方向和双胞胎形式的缺陷。一旦满足相互作用的临界值,就会形成五倍富集的玻璃状簇。我们讨论了热聚合物系统中能量驱动的晶体成核与非热聚合物填料中的熵驱动的相变之间的异同。我们进一步计算每个站点的局部密度,其对距簇中心的距离的依赖性以及与局部环境的晶体学特征的相关性。根据已建立的簇形态分析链的短和长构象。

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