Schmidt Matthias, Dijkstra Marjolein, Hansen Jean-Pierre
Soft Condensed Matter, Debye Institute, Utrecht University, Princetonplein 5, 3584 CC Utrecht, The Netherlands.
Phys Rev Lett. 2004 Aug 20;93(8):088303. doi: 10.1103/PhysRevLett.93.088303.
Density functional theory and computer simulation are used to investigate sedimentation equilibria of colloid-polymer mixtures within the Asakura-Oosawa-Vrij model of hard sphere colloids and ideal polymers. When the ratio of buoyant masses of the two species is comparable to the ratio of differences in density of the coexisting bulk (colloid) gas and liquid phases, a stable "floating liquid" phase is found, i.e., a thin layer of liquid sandwiched between upper and lower gas phases. The full phase diagram of the mixture under gravity shows coexistence of this floating liquid phase with a single gas phase or a phase involving liquid-gas equilibrium; the phase coexistence lines meet at a triple point. This scenario remains valid for general asymmetric binary mixtures undergoing bulk phase separation.
采用密度泛函理论和计算机模拟方法,在硬球胶体和理想聚合物的朝仓-大泽-弗里伊模型内研究胶体-聚合物混合物的沉降平衡。当两种物质的浮力质量比与共存体相(胶体)气液相密度差之比相当时,会发现一个稳定的“漂浮液相”,即夹在上、下气相之间的一层薄液层。混合物在重力作用下的完整相图表明,这种漂浮液相与单一气相或涉及气液平衡的相共存;相共存线在三相点相交。这种情况对于经历体相分离的一般非对称二元混合物仍然有效。