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软核吸引势的液-液相转变

Liquid-liquid phase transitions for soft-core attractive potentials.

作者信息

Skibinsky A, Buldyrev S V, Franzese G, Malescio G, Stanley H E

机构信息

Center for Polymer Studies and Department of Physics, Boston University, Boston, Massachusetts 02215, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Jun;69(6 Pt 1):061206. doi: 10.1103/PhysRevE.69.061206. Epub 2004 Jun 22.

Abstract

Using event-driven molecular dynamics simulations, we study a three-dimensional one-component system of spherical particles interacting via a discontinuous potential combining a repulsive square soft core and an attractive square well. In the case of a narrow attractive well, it has been shown that this potential has two metastable gas-liquid critical points. Here we systematically investigate how the changes of the parameters of this potential affect the phase diagram of the system. We find a broad range of potential parameters for which the system has both a gas-liquid critical point C1 and a liquid-liquid critical point C2. For the liquid-gas critical point we find that the derivatives of the critical temperature and pressure, with respect to the parameters of the potential, have the same signs: they are positive for increasing width of the attractive well and negative for increasing width and repulsive energy of the soft core. This result resembles the behavior of the liquid-gas critical point for standard liquids. In contrast, for the liquid-liquid critical point the critical pressure decreases as the critical temperature increases. As a consequence, the liquid-liquid critical point exists at positive pressures only in a finite range of parameters. We present a modified van der Waals equation which qualitatively reproduces the behavior of both critical points within some range of parameters, and gives us insight on the mechanisms ruling the dependence of the two critical points on the potential's parameters. The soft-core potential studied here resembles model potentials used for colloids, proteins, and potentials that have been related to liquid metals, raising an interesting possibility that a liquid-liquid phase transition may be present in some systems where it has not yet been observed.

摘要

通过事件驱动分子动力学模拟,我们研究了一个三维单组分球形粒子系统,这些粒子通过一种不连续势相互作用,该势结合了一个排斥性的方形软核和一个吸引性的方阱。在窄吸引阱的情况下,已经表明这种势有两个亚稳气液临界点。在此,我们系统地研究了该势参数的变化如何影响系统的相图。我们发现存在广泛的势参数范围,对于这些参数,系统既有气液临界点C1又有液液临界点C2。对于气液临界点,我们发现临界温度和压力相对于势参数的导数具有相同的符号:吸引阱宽度增加时它们为正,软核宽度和排斥能增加时它们为负。这一结果类似于标准液体中气液临界点的行为。相比之下,对于液液临界点,临界压力随着临界温度的升高而降低。因此,液液临界点仅在有限的参数范围内存在于正压力下。我们提出了一个修正的范德瓦尔斯方程,它在一定参数范围内定性地再现了两个临界点的行为,并让我们深入了解了决定两个临界点对势参数依赖性的机制。这里研究的软核势类似于用于胶体、蛋白质的模型势以及与液态金属相关的势,这引发了一种有趣的可能性,即在一些尚未观察到的系统中可能存在液液相变。

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