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键相互作用对柔性聚合物结构相的影响。

Influence of bonded interactions on structural phases of flexible polymers.

机构信息

Theoretical Soft Matter and Biophysics, Institute of Complex Systems and Institute for Advanced Simulation, Forschungszentrum Jülich, D-52425 Jülich, Germany.

Soft Matter Systems Research Group, Center for Simulational Physics, The University of Georgia, Athens, Georgia 30602, USA.

出版信息

J Chem Phys. 2019 Feb 7;150(5):054904. doi: 10.1063/1.5081831.

Abstract

We introduce a novel coarse-grained bead-spring model for flexible polymers to systematically examine the effects of an adjusted bonded potential on the formation and stability of structural macrostates in a thermal environment. The density of states obtained in advanced replica-exchange Monte Carlo simulations is analyzed by employing the recently developed generalized microcanonical inflection-point analysis method, which enables the identification of diverse structural phases and the construction of a suitably parameterized hyperphase diagram. It reveals that icosahedral phases dominate for polymers with asymmetric and narrow bond potentials, whereas polymers with symmetric and more elastic bonds tend to form amorphous structures with non-icosahedral cores. We also observe a hierarchy in the freezing transition behavior associated with the formation of the surface layer after nucleation.

摘要

我们引入了一种新的柔性聚合物粗粒化珠-簧模型,以系统地研究调整的键合势能对热环境中结构宏观态的形成和稳定性的影响。通过使用最近开发的广义微正则拐点分析方法对高级复制交换蒙特卡罗模拟中获得的态密度进行分析,该方法能够识别不同的结构相,并构建一个适当参数化的超相图。结果表明,对于键合势不对称且较窄的聚合物,二十面体相占主导地位,而对于具有对称和更弹性键的聚合物,倾向于形成具有非二十面体核的非晶态结构。我们还观察到与成核后表面层形成相关的冻结转变行为的层次结构。

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