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Thermodynamic perturbation theory for a valence-limited model of colloidal systems

机译:胶体系统价有限型号的热力学扰动理论

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摘要

Thermodynamic perturbation theory for central force associating potential is extended and applied to describe the properties of the valence-limited model of colloidal fluids. The model, which has been developed by Speedy and Debenedetti in early 1990s (R. J. Speedy, P. G. Debenedetti, Mol. Phys. 81, 237(1994)), is represented by the fluid of non-additive square-well hard spheres with a predefined maximum number of bonds that each particle can form. The theory takes into account ring formation and higher order distribution functions of the reference system. To assess the accuracy of the theory, we perform extensive Monte Carlo simulations for the original version of the model and its limiting version with square-well potential represented by the sticky Baxter interaction. Theoretical predictions for thermodynamic properties (pressure, energy, entropy) and fractions of n-time bonded particles are in good agreement with corresponding computer simulation predictions. Results of the theory for the liquid-gas phase diagram of the model with are less accurate.
机译:延长核心力关联电位的热力学扰动理论,延伸和应用,以描述胶体流体的价值限制模型的性质。由20世纪90年代初期的快速和Debenedetti开发的模型(RJ Speedy,PG Debenedetti,Mol。物理。81,237(1994))由非加上附加方形井硬球的流体表示预定义每个粒子可以形成的最大键数。该理论考虑了参考系统的环形形成和高阶分布函数。为了评估理论的准确性,我们为模型的原始版本进行了广泛的蒙特卡罗模拟及其限制版本,具有由粘性Baxter相互作用表示的方形井电位。 N-Time键合粒子的热力学性质(压力,能量,熵)和级分的理论预测与相应的计算机模拟预测有关。模型的液气相图理论的结果不太准确。

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