Hynninen Antti-Pekka, Dijkstra Marjolein
Soft Condensed Matter Group, Debye Institute, Utrecht University, Princetonplein 5, 3584 CC Utrecht, The Netherlands.
J Chem Phys. 2005 Dec 22;123(24):244902. doi: 10.1063/1.2138693.
We develop an efficient simulation method to study suspensions of charged spherical colloids using the primitive model. In this model, the colloids and the co- and counterions are represented by charged hard spheres, whereas the solvent is treated as a dielectric continuum. In order to speed up the simulations, we restrict the positions of the particles to a cubic lattice, which allows precalculation of the Coulombic interactions at the beginning of the simulation. Moreover, we use multiparticle cluster moves that make the Monte Carlo sampling more efficient. The simulations are performed in the semigrand canonical ensemble, where the chemical potential of the salt is fixed. Employing our method, we study a system consisting of colloids carrying a charge of 80 elementary charges and monovalent co- and counterions. At the colloid densities of our interest, we show that lattice effects are negligible for sufficiently fine lattices. We determine the fluid-solid melting line in a packing fraction eta-inverse screening length kappa plane and compare it with the melting line of charged colloids predicted by the Yukawa potential of the Derjaguin-Landau-Verwey-Overbeek theory. We find qualitative agreement with the Yukawa results, and we do not find any effects of many-body interactions. We discuss the difficulties involved in the mapping between the primitive model and the Yukawa model at high colloid packing fractions (eta>0.2).
我们开发了一种高效的模拟方法,使用原始模型来研究带电球形胶体的悬浮液。在该模型中,胶体以及共离子和反离子由带电硬球表示,而溶剂被视为介电连续体。为了加速模拟,我们将粒子的位置限制在立方晶格上,这使得在模拟开始时可以预先计算库仑相互作用。此外,我们使用多粒子团簇移动,使蒙特卡罗采样更有效。模拟在半巨正则系综中进行,其中盐的化学势是固定的。采用我们的方法,我们研究了一个由携带80个基本电荷的胶体以及单价共离子和反离子组成的系统。在我们感兴趣的胶体密度下,我们表明对于足够精细的晶格,晶格效应可以忽略不计。我们在堆积分数η - 反屏蔽长度κ平面中确定了流体 - 固体熔化线,并将其与德亚金 - 朗道 - 韦弗 - 奥弗贝克理论的 Yukawa 势预测的带电胶体的熔化线进行比较。我们发现与 Yukawa 结果有定性的一致性,并且没有发现任何多体相互作用的影响。我们讨论了在高胶体堆积分数(η>0.2)下原始模型和 Yukawa 模型之间映射所涉及的困难。