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首页> 外文期刊>The Journal of Chemical Physics >Effect of quenched size polydispersity on the fluid-solid transition in charged colloidal suspensions
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Effect of quenched size polydispersity on the fluid-solid transition in charged colloidal suspensions

机译:淬火粒径多分散性对带电胶体悬浮液中流固转变的影响

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We study the effect of quenched size polydispersity on the phase behavior of charged colloidal suspensions using free-energy calculations in Monte Carlo simulations. The colloids are assumed to interact with a hard-core repulsive Yukawa (screened-Coulomb) interaction with constant surface potential, so that the particles are polydisperse both in size and charge. In addition, we take the size distribution to be fixed in both the fluid and crystal phase (no size fractionation is allowed). We study the fluid-solid transition for various screening lengths and surface potentials, finding that upon increasing the size polydispersity the freezing transition shifts toward higher packing fractions and the density discontinuity between the two coexisting phases diminishes. Our results provide support for a terminal polydispersity above which the freezing transition disappears.
机译:我们使用蒙特卡洛模拟中的自由能计算研究了猝灭尺寸多分散度对带电胶体悬浮液相行为的影响。假定胶体与具有恒定表面电势的硬核排斥性Yukawa(屏蔽库仑)相互作用相互作用,因此颗粒在大小和电荷上都呈多分散性。另外,我们将尺寸分布固定在液相和结晶相中(不允许尺寸分级)。我们研究了各种筛选长度和表面电位的流固转变,发现随着尺寸多分散度的增加,冷冻转变向更高的填充率转变,并且两个共存相之间的密度不连续性减小。我们的结果为最终的多分散性提供了支持,在此之上,冷冻转变消失了。

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