Soft Condensed Matter, Utrecht University, Princetonplein 5, 3584 CC Utrecht, Netherlands.
Institute for Theoretical Physics, Utrecht University, Leuvenlaan 4, 3584 CE Utrecht, Netherlands.
Phys Rev Lett. 2015 Jan 23;114(3):038301. doi: 10.1103/PhysRevLett.114.038301. Epub 2015 Jan 21.
From experimental studies, it is well known that colloidal particles suspended in a near-critical binary solvent exhibit interesting aggregation phenomena, often associated with colloidal phase transitions and assumed to be driven by long-ranged solvent-mediated (SM) interactions (critical Casimir forces), set by the (diverging) correlation length of the solvent. We present the first simulation and theoretical study of an explicit model of a ternary mixture that mimics this situation. Both the effective SM pair interactions and the full ternary phase diagram are determined for Brownian disks suspended in an explicit two-dimensional supercritical binary liquid mixture. Gas-liquid and fluid-solid transitions are observed in a region that extends well away from criticality of the solvent reservoir. We discuss to what extent an effective pair-potential description can account for the phase behavior we observe. Our study provides a fresh perspective on how proximity to the critical point of the solvent reservoir might influence colloidal self-assembly.
从实验研究中可知,悬浮在近临界二元溶剂中的胶体颗粒表现出有趣的聚集现象,通常与胶体相转变有关,并假定是由长程溶剂介导(SM)相互作用(临界 Casimir 力)驱动的,由溶剂的(发散)相关长度决定。我们提出了第一个模拟和理论研究,用于模拟这种情况的三元混合物的显式模型。布朗磁盘悬浮在显式二维超临界二元液体混合物中时,确定了有效 SM 对相互作用和完整的三元相图。在远离溶剂库临界值的区域观察到气-液和液-固转变。我们讨论了有效对势描述在多大程度上可以解释我们观察到的相行为。我们的研究提供了一个新的视角,说明接近溶剂库的临界点如何影响胶体自组装。