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Thermodynamic scaling and corresponding states for the self-diffusion coefficient of non-conformal soft-sphere fluids
被引:7
|作者:
Rodriguez-Lopez, Tonalli
[1
]
Antonio Moreno-Razo, J.
[1
]
del Rio, Fernando
[1
]
机构:
[1] Univ Autonoma Metropolitana, Dept Fis, Mexico City 09340, DF, Mexico
关键词:
EQUATION-OF-STATE;
TRANSPORT-COEFFICIENTS;
VIRIAL-COEFFICIENTS;
EFFECTIVE DIAMETERS;
REPULSIVE FORCES;
MOLECULAR FLUIDS;
POTENTIALS;
LIQUIDS;
SUSPENSIONS;
DEPENDENCE;
D O I:
10.1063/1.4795118
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
In this work, we explore transport properties of a special type of repulsive spheres that exhibit remarkable scaling of their thermodynamic properties. In order to accomplish that we propose a new way to derive and express effective hard-sphere diameters for transport properties of simple fluids. The procedure relies on mapping the system's transport properties, in the low density limit, to the hard-sphere fluid. We have chosen a set of soft-sphere systems characterised by a well-defined variation of their softness. These systems represent an extension of the repulsive Lennard-Jones potential widely used in statistical mechanics of fluids and are an accurate representation of the effective repulsive potentials of real systems. The self-diffusion coefficient of the soft-sphere fluids is obtained by equilibrium molecular dynamics. The soft-sphere collision integrals of different systems are shown to follow quite simple relationships between each other. These collision integrals are incorporated, through the definition of the effective hard-sphere diameter, in the resulting equation for the self-diffusion coefficient. The approach followed exhibits a density rescaling that leads to a single master curve for all systems and temperatures. The scaling is carried through to the level of the mean-squared displacement. (C) 2013 American Institute of Physics. [http://dx.doi.org/10.1063/1.4795118]
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