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硬核 Yukawa 混合物的理论与计算机模拟:热力学、结构及相共存性质

Theory and computer simulation of hard-core Yukawa mixtures: thermodynamical, structural and phase coexistence properties.

作者信息

Mkanya Anele, Pellicane Giuseppe, Pini Davide, Caccamo Carlo

机构信息

School of Chemistry and Physics, University of Kwazulu-Natal, Private Bag X01, Scottsville 3209, Pietermaritzburg, South Africa.

出版信息

J Phys Condens Matter. 2017 Sep 13;29(36):365102. doi: 10.1088/1361-648X/aa7c8b. Epub 2017 Jun 29.

Abstract

We report extensive calculations, based on the modified hypernetted chain (MHNC) theory, on the hierarchical reference theory (HRT), and on Monte Carlo simulations, of thermodynamical, structural and phase coexistence properties of symmetric binary hard-core Yukawa mixtures (HCYM) with attractive interactions at equal species concentration. The obtained results are throughout compared with those available in the literature for the same systems. It turns out that the MHNC predictions for thermodynamic and structural quantities are quite accurate in comparison with the MC data. The HRT is equally accurate for thermodynamics, and slightly less accurate for structure. Liquid-vapor (LV) and liquid-liquid (LL) consolute coexistence conditions as emerging from simulations, are also highly satisfactorily reproduced by both the MHNC and HRT for relatively long ranged potentials. When the potential range reduces, the MHNC faces problems in determining the LV binodal line; however, the LL consolute line and the critical end point (CEP) temperature and density turn out to be still satisfactorily predicted within this theory. The HRT also predicts with good accuracy the CEP position. The possibility of employing liquid state theories HCYM for the purpose of reliably determining phase equilibria in multicomponent colloidal fluids of current technological interest, is discussed.

摘要

我们报告了基于修正超网链(MHNC)理论、层次参考理论(HRT)以及蒙特卡罗模拟,对等物种浓度下具有吸引相互作用的对称二元硬核 Yukawa 混合物(HCYM)的热力学、结构和相共存性质进行的广泛计算。所得结果始终与文献中相同体系的结果进行比较。结果表明,与蒙特卡罗数据相比,MHNC 对热力学和结构量的预测相当准确。HRT 在热力学方面同样准确,而在结构方面稍欠准确。模拟得出的液 - 气(LV)和液 - 液(LL)共溶共存条件,对于相对长程的势,MHNC 和 HRT 也都能高度令人满意地再现。当势程减小时,MHNC 在确定 LV 双节线时面临问题;然而,在该理论范围内,LL 共溶线以及临界端点(CEP)温度和密度仍能得到令人满意的预测。HRT 对 CEP 位置的预测也具有良好的准确性。讨论了将液态理论 HCYM 用于可靠确定当前技术感兴趣的多组分胶体流体中的相平衡的可能性。

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