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大小非对称硬球三元混合物中的结构有序和玻璃化转变:从脆性玻璃到强玻璃的变化。

Structure ordering and glass transition in size-asymmetric ternary mixtures of hard spheres: Variation from fragile to strong glasses.

机构信息

Department of Physics, Banaras Hindu University, Varanasi 221 005, India.

出版信息

Phys Rev E. 2023 Jan;107(1-1):014119. doi: 10.1103/PhysRevE.107.014119.

Abstract

We investigate the structure and activated dynamics of a binary mixture of colloidal particles dispersed in a solvent of much smaller-sized particles. The solvent degrees of freedom are traced out from the grand partition function of the colloid-solvent mixture which reduces the system from ternary to effective binary mixture of colloidal particles. In the effective binary mixture colloidal particles interact via effective potential that consists of bare potential plus the solvent-induced interaction. Expressions for the effective potentials and pair correlation functions are derived. We used the result of pair correlation functions to determine the number of particles in a cooperatively reorganizing cluster (CRC) in which localized particles form "long-lived" nonchemical bonds with the central particle. For an event of relaxation to take place these bonds have to reorganize irreversibly, the energy involved in the processes is the effective activation energy of relaxation. Results are reported for hard sphere colloidal particles dispersed in a solvent of hard sphere particles. Our results show that the concentration of solvent can be used as a control parameter to fine-tune the microscopic structural ordering and the size of CRC that governs the glassy dynamics. We show that a small variation in the concentration of solvent creates a bigger change in the kinetic fragility which highlights a wide variation in behavior, ranging from fragile to strong glasses. We conclude that the CRC which is determined from the static pair correlation function and the fluctuations embedded in the system is probably the sole player in the physics of glass transition.

摘要

我们研究了分散在小尺寸颗粒溶剂中的胶体颗粒二元混合物的结构和激活动力学。溶剂自由度从胶体-溶剂混合物的巨配分函数中被追踪出来,这将系统从三元简化为胶体颗粒的有效二元混合物。在有效二元混合物中,胶体颗粒通过有效势相互作用,该有效势由裸势和溶剂诱导相互作用组成。我们推导出了有效势和对关联函数的表达式。我们使用对关联函数的结果来确定协同重组簇(CRC)中粒子的数量,其中局部化的粒子与中心粒子形成“长寿命”的非化学键。为了发生松弛事件,这些键必须不可逆地重新排列,涉及的能量是松弛的有效激活能。我们报告了硬球胶体颗粒在硬球颗粒溶剂中的结果。我们的结果表明,溶剂的浓度可以作为一个控制参数来微调微观结构的有序性和控制玻璃动力学的 CRC 的大小。我们表明,溶剂浓度的微小变化会导致动力学脆性发生更大的变化,这突出了从脆弱到强玻璃的广泛变化行为。我们得出结论,CRC 是由静态对关联函数和系统中嵌入的涨落确定的,它可能是玻璃转变物理的唯一参与者。

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