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Observation of coupling between vibrational and configurational entropy in a supercooled molecular chalcogenide glass-forming liquid

机译:过冷分子硫族化物玻璃形成液中振动熵与构型熵的耦合观察

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摘要

The temperature dependence of the line widths and frequencies of the vibrational modes of As4S3 molecules is studied in the Ge3As52S45 molecular glass and supercooled liquid at temperatures ranging from similar to T-g - 189 K to up to similar to T-g + 111 K, using Raman spectroscopy. The results reveal the presence of strong dynamical coupling between vibrational and configurational degrees of freedom of the molecules such that both the phonon lifetime and the density of states are affected by the rotational (and possibly translational) molecular dynamics in the supercooled liquid. The physical origin of such coupling is discussed within the framework of the potential energy landscape model of the glass transition. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用拉曼光谱法在Ge3As52S45分子玻璃和过冷液体中研究了As4S3分子的线宽和振动模式的频率与温度的关系,温度范围从类似于T-g-189 K到高达类似于T-g + 111 K.结果揭示了分子的振动和构型自由度之间存在强的动力学耦合,使得声子寿命和状态密度都受过冷液体中旋转(以及可能的平移)分子动力学的影响。在玻璃化转变的势能景观模型的框架内讨论了这种耦合的物理起源。 (C)2016 Elsevier B.V.保留所有权利。

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