Department of Physics, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.
Phys Rev Lett. 2012 Nov 9;109(19):195701. doi: 10.1103/PhysRevLett.109.195701. Epub 2012 Nov 7.
We have studied the interplay between phase separation and crystallization in a colloid-polymer mixture along one kinetic pathway in samples which exhibit three-phase equilibrium coexistence. In analogy with atomic systems, the range of the effective attractive interaction between colloids is sufficiently long to allow for a stable liquid phase. By direct imaging in microgravity on the International Space Station, we observe a unique structure, a "crystal gel," that occurs when gas-liquid phase separation arrests due to crystallites within the liquid domain spanning the cell. From the initial onset of spinodal decomposition until arrest caused by this structure, the kinetics of phase separation remain largely unaffected by the formation of the third phase. This dynamic arrest appears to result from the stiffness of the crystalline strands exceeding the liquid-gas interfacial tension.
我们研究了在具有三相平衡共存的样品中沿一条动力学途径的胶体-聚合物混合物中的相分离和结晶之间的相互作用。与原子系统类似,胶体之间的有效吸引力的范围足够长,以允许形成稳定的液相。通过在国际空间站上的微重力直接成像,我们观察到一种独特的结构,即“晶体凝胶”,当由于跨越细胞的液体域中的晶体而使气-液分相停止时发生。从初始的旋节分解开始,直到由于这种结构而停止,相分离的动力学仍然基本上不受第三相形成的影响。这种动态停止似乎是由于晶体链的刚度超过了液体-气体界面张力。