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液态硫中的λ转变是从弱到强的转变吗?

Is the λ-transition in liquid sulfur a fragile-to-strong transition?

作者信息

Yuan Bing, Aitken Bruce, Sen Sabyasachi

机构信息

Department of Materials Science and Engineering, University of California at Davis, Davis, California 95616, USA.

Science and Technology Division, Corning, Inc., Corning, New York 14831, USA.

出版信息

J Chem Phys. 2019 Jul 28;151(4):041105. doi: 10.1063/1.5110177.

Abstract

The abrupt and large increase in the viscosity of liquid sulfur above the λ-transition temperature T corresponds to a reversible structural transformation in the form of a ring-to-chain polymerization reaction. The mechanistic connection between this structural transformation and viscosity is investigated by studying the compositional dependence of the shear relaxation behavior of supercooled SSe liquids as their structural evolution mimics that of liquid sulfur across the λ-transition. The results of steady and oscillatory shear parallel-plate rheometry indicate that the viscosity of these liquids is controlled by the S/Se-S/Se bond scission/renewal dynamics and the time scale of these dynamics rapidly increases as the relative concentrations of rings and chains in the structure become comparable. The coexistence of these two types of topological units in these liquids lowers the conformational entropy of the chain elements due to a steric hindrance from the ring elements, resulting in a rapid drop in the fragility as S is added to Se. The same topological effect resulting from the ring-to-chain transformation in liquid S renders the highly fragile molecular liquid below T, a strong polymerized liquid above T. Therefore, it is argued that the λ-transition of liquid S corresponds to a fragile-to-strong liquid-liquid transition.

摘要

在高于λ转变温度T时,液态硫的粘度突然大幅增加,这对应于一种以环-链聚合反应形式存在的可逆结构转变。通过研究过冷SSe液体的剪切松弛行为的组成依赖性来探究这种结构转变与粘度之间的机理联系,因为它们的结构演化模拟了液态硫在λ转变过程中的演化。稳态和振荡剪切平行板流变学的结果表明,这些液体的粘度受S/Se - S/Se键断裂/更新动力学控制,并且随着结构中环和链的相对浓度变得可比,这些动力学的时间尺度迅速增加。由于环单元的空间位阻,这些液体中这两种拓扑单元的共存降低了链单元的构象熵,导致随着S添加到Se中,脆性迅速下降。液态S中环-链转变产生的相同拓扑效应使低于T的高度脆性分子液体变为高于T的强聚合液体。因此,有人认为液态S的λ转变对应于从脆性到强性的液-液转变。

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