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分子玻璃形成体的动力学:邻三联苯中扩散的能量景观

Dynamics of a molecular glass former: Energy landscapes for diffusion in ortho-terphenyl.

作者信息

Niblett S P, de Souza V K, Stevenson J D, Wales D J

机构信息

University Chemical Laboratories, Lensfield Road, Cambridge CB2 1EW, United Kingdom.

出版信息

J Chem Phys. 2016 Jul 14;145(2):024505. doi: 10.1063/1.4954324.

Abstract

Relaxation times and transport processes of many glass-forming supercooled liquids exhibit a super-Arrhenius temperature dependence. We examine this phenomenon by computer simulation of the Lewis-Wahnström model for ortho-terphenyl. We propose a microscopic definition for a single-molecule cage-breaking transition and show that, when correlation behaviour is taken into account, these rearrangements are sufficient to reproduce the correct translational diffusion constants over an intermediate temperature range in the supercooled regime. We show that super-Arrhenius behaviour can be attributed to increasing negative correlation in particle movement at lower temperatures and relate this to the cage-breaking description. Finally, we sample the potential energy landscape of the model and show that it displays hierarchical ordering. Substructures in the landscape, which may correspond to metabasins, have boundaries defined by cage-breaking transitions. The cage-breaking formulation provides a direct link between the potential energy landscape and macroscopic diffusion behaviour.

摘要

许多玻璃形成过冷液体的弛豫时间和输运过程呈现出超阿仑尼乌斯温度依赖性。我们通过对邻三联苯的Lewis-Wahnström模型进行计算机模拟来研究这一现象。我们提出了单分子笼破裂转变的微观定义,并表明,当考虑相关行为时,这些重排足以在过冷状态的中间温度范围内重现正确的平移扩散常数。我们表明,超阿仑尼乌斯行为可归因于较低温度下粒子运动中负相关性的增加,并将其与笼破裂描述联系起来。最后,我们对模型的势能面进行采样,表明它呈现出层次有序性。势能面中的子结构可能对应于亚盆地,其边界由笼破裂转变定义。笼破裂公式在势能面和宏观扩散行为之间提供了直接联系。

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