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首页> 外文期刊>The Journal of Chemical Physics >Dynamical and structural correlation in supercooled liquids: A molecular dynamics investigation of m-toluidine
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Dynamical and structural correlation in supercooled liquids: A molecular dynamics investigation of m-toluidine

机译:过冷液体中的动力学和结构相关性:间甲苯胺的分子动力学研究

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摘要

Structural and dynamical properties of liquid and supercooled liquid m-toluidine are studied by molecular dynamics simulations. Approaching the liquid-glass transition, dynamical heterogenetics, a characteristic common to all supercooled glass formers, are observed. We prove the occurrence of strict correlation between these heterogeities and the potential energy landscape of the system, expressed in terms of molecule-molecule interactions. A slowing down of the self-diffusive motion of the molecular centers of mass is observed for particular arrangements of pairs of H-bonded molecules. Previous studies on model systems provided evidence of the correlation between dynamical heterogeneities and potential energy landscape, described in terms of the inherent structure of the system. While in this last case the structure is viewed as a collective property of the system, in m-toluidine short-range intractions are sufficient to explain the dynamical behavior in a satisfactory way. This result agrees with the view, supported also by experimental observations, that m-toluidine can be considered as an ensemble of H-bonded subsystems weakly interacting among them.
机译:通过分子动力学模拟研究了液体和过冷液体间甲苯胺的结构和动力学性质。接近液-玻璃转变时,观察到动态异质性,这是所有过冷玻璃形成器的共同特征。我们证明了这些异质性与系统的势能态之间存在严格的相关性,用分子-分子相互作用表示。对于成对的H键分子对,观察到分子质心的自扩散运动变慢。先前对模型系统的研究提供了动力异质性和势能态之间相关性的证据,以系统的固有结构来描述。尽管在最后一种情况下,该结构被视为系统的集体性质,但在间甲苯胺中,短程干扰足以以令人满意的方式解释动力学行为。这一结果与观点相吻合,并得到了实验观察的支持,即间甲苯胺可被视为氢键键合的子系统之间的弱相互作用的集合。

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