Jungblut S, Tuinier R, Binder K, Schilling T
Institut für Physik, Johannes Gutenberg-Universität, Staudinger Weg 7, D-55099 Mainz, Germany.
J Chem Phys. 2007 Dec 28;127(24):244909. doi: 10.1063/1.2815805.
When non-adsorbing polymers are added to an isotropic suspension of rod-like colloids, the colloids effectively attract each other via depletion forces. We performed Monte Carlo simulations to study the phase diagram of such rod-polymer mixture. The colloidal rods were modeled as hard spherocylinders; the polymers were described as spheres of the same diameter as the rods. The polymers may overlap with no energy cost, while the overlap of polymers and rods is forbidden. Large amounts of depletant cause phase separation of the mixture. We estimated the phase boundaries of isotropic-isotropic coexistence both in the bulk and in confinement. To determine the phase boundaries we applied the grand canonical ensemble using successive umbrella sampling [J. Chem. Phys. 120, 10925 (2004)], and we performed a finite size scaling analysis to estimate the location of the critical point. The results are compared with predictions of the free volume theory developed by Lekkerkerker and Stroobants [Nuovo Cimento D 16, 949 (1994)]. We also give estimates for the interfacial tension between the coexisting isotropic phases and analyze its power-law behavior on the approach of the critical point.
当将非吸附性聚合物添加到棒状胶体的各向同性悬浮液中时,胶体通过排空力有效地相互吸引。我们进行了蒙特卡罗模拟以研究这种棒 - 聚合物混合物的相图。胶体棒被建模为硬球柱体;聚合物被描述为与棒直径相同的球体。聚合物可以无能量成本地重叠,而聚合物与棒的重叠是被禁止的。大量的耗尽剂会导致混合物的相分离。我们估计了本体和受限情况下各向同性 - 各向同性共存的相边界。为了确定相边界,我们使用连续伞形抽样[《化学物理杂志》120, 10925 (2004)]应用巨正则系综,并进行有限尺寸标度分析以估计临界点的位置。将结果与Lekkerkerker和Stroobants [《新实验 D》16, 949 (1994)]提出的自由体积理论的预测进行了比较。我们还给出了共存各向同性相之间界面张力的估计值,并分析了其在临界点附近的幂律行为。