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CuAu Structure in the Restricted Primitive Model and Oppositely Charged Colloids

机译:限制性原始模型中的CuAu结构和带相反电荷的胶体

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摘要

We study the phase behavior of oppositely charged equal-size hard spheres both theoretically and experimentally, using Monte Carlo simulations and confocal microscopy. In the simulations, two systems are considered: the restricted primitive model (RPM) and a system of screened Coulomb particles. We construct the phase diagrams of both systems by computer simulations and predict a novel solid phase that has the CuAu structure. In addition, the CuAu structure is observed experimentally in a system of oppositely charged colloids. The qualitative agreement between the RPM, the screened Coulomb system, and the experiments shows that colloids form a suitable model system to study phase behavior in ionic systems.
机译:我们使用蒙特卡罗模拟和共聚焦显微镜,在理论和实验上研究带相反电荷的等尺寸硬球的相态。在模拟中,考虑了两个系统:受限制的原始模型(RPM)和筛选的库仑粒子系统。我们通过计算机仿真来构建两个系统的相图,并预测具有CuAu结构的新型固相。此外,在带相反电荷的胶体系统中实验观察到CuAu结构。 RPM,筛选的库仑系统和实验之间的定性一致表明,胶体形成了一个合适的模型系统来研究离子系统中的相行为。

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