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单组分流体中多种流体-流体转变的理论预测。

Theoretical prediction of multiple fluid-fluid transitions in monocomponent fluids.

作者信息

Cervantes L A, Benavides A L, del Río F

机构信息

Instituto de Física, Universidad de Guanajuato, Lomas del Bosque 103, Colonia Lomas del Campestre, León 37150, Mexico.

出版信息

J Chem Phys. 2007 Feb 28;126(8):084507. doi: 10.1063/1.2463591.

Abstract

The authors use the analytical equation of state obtained by the discrete perturbation theory [A. L. Benavides and A. Gil-Villegas, Mol. Phys. 97, 1225 (1999)] to study the phase diagram of fluids with discrete spherical potentials formed by a repulsive square-shoulder plus an attractive square-well interaction (SS+SW). This interaction is characterized by the usual energy and size parameters plus three dimensionless parameters: two of them measuring the widths of the SS and the SW and the third the relative height of the SS. The matter of interest is that, for certain values of the interaction parameters, the SS+SW systems exhibit more than one first-order fluid-fluid transition. The evidence that several real substances (such as water, phosphorus, carbon, and silica, among others) exhibit an extra liquid-liquid transition has drawn interest into the study of interactions responsible for this behavior. The simple SS+SW fluid is one of the systems that, in spite of being spherically symmetric, shows multiple fluid-fluid transitions. In this work the authors investigate systematically the effect on the phase diagram of varying the interaction parameters. The use of an analytical free-energy equation gives a clear thermodynamic picture of the emergence of different types of critical points, throwing new light on the phase behavior of these fluids and thus clarifying previous results obtained by other techniques. The interplay of attractive and repulsive forces with several scale lengths produces very rich phase diagrams, including cases with three critical points. The region of the interaction-parameter space where multiple critical points appear is mapped for various families of interactions.

摘要

作者使用离散微扰理论得到的解析状态方程[A. L. 贝纳维德斯和A. 吉尔 - 维列加斯,《分子物理学》97, 1225 (1999)]来研究由排斥性方肩势加吸引性方阱势(SS + SW)形成的具有离散球形势的流体的相图。这种相互作用由通常的能量和尺寸参数以及三个无量纲参数表征:其中两个测量方肩势和方阱势的宽度,第三个测量方肩势的相对高度。有趣的是,对于相互作用参数的某些值,SS + SW系统表现出不止一个一级流体 - 流体转变。有证据表明几种真实物质(如水、磷、碳和二氧化硅等)表现出额外的液 - 液转变,这引起了人们对导致这种行为的相互作用研究的兴趣。简单的SS + SW流体是尽管具有球对称性但仍表现出多个流体 - 流体转变的系统之一。在这项工作中,作者系统地研究了改变相互作用参数对相图的影响。使用解析自由能方程给出了不同类型临界点出现的清晰热力学图景,为这些流体的相行为提供了新的见解,从而澄清了通过其他技术获得的先前结果。具有多个尺度长度的吸引力和排斥力的相互作用产生了非常丰富的相图,包括具有三个临界点的情况。针对各种相互作用族,绘制了出现多个临界点的相互作用参数空间区域。

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