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首页> 外文期刊>The Journal of Chemical Physics >Gas-liquid phase separation in oppositely charged colloids: Stability and interfacial tension
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Gas-liquid phase separation in oppositely charged colloids: Stability and interfacial tension

机译:带相反电荷的胶体中的气-液相分离:稳定性和界面张力

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We study the phase behavior and the interfacial tension of the screened Coulomb (Yukawa) restricted primitive model (YRPM) of oppositely charged hard spheres with diameter sigma using Monte Carlo simulations. We determine the gas-liquid and gas-solid phase transitions using free energy calculations and grand-canonical Monte Carlo simulations for varying inverse Debye screening length kappa. We find that the gas-liquid phase separation is stable for kappa sigma <= 4, and that the critical temperature decreases upon increasing the screening of the interaction (decreasing the range of the interaction). In addition, we determine the gas-liquid interfacial tension using grand-canonical Monte Carlo simulations. The interfacial tension decreases upon increasing the range of the interaction. In particular, we find that simple scaling can be used to relate the interfacial tension of the YRPM to that of the restricted primitive model, where particles interact with bare Coulomb interactions. (c) 2006 American Institute of Physics.
机译:我们使用蒙特卡洛模拟研究了直径为sigma的带相反电荷的硬球的经筛选的库仑(Yukawa)受限原始模型(YRPM)的相行为和界面张力。我们使用自由能计算和经典的蒙特卡洛模拟来确定气-液和气-固相变,以改变反德拜筛分长度kappa。我们发现气-液相分离对于κσ<= 4是稳定的,并且临界温度随着相互作用的筛选增加(减小相互作用的范围)而降低。此外,我们使用经典的蒙特卡洛模拟方法确定气液界面张力。界面张力随着相互作用范围的增加而降低。特别是,我们发现简单的缩放可用于将YRPM的界面张力与受限原始模型的界面张力相关联,在有限原始模型中,粒子与裸库仑相互作用相互作用。 (c)2006年美国物理研究所。

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