Dogic Z, Frenkel D, Fraden S
The Complex Fluid Group, Martin Fisher School of Physics, Brandeis University, Waltham, Massachusetts 02254, USA.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Sep;62(3 Pt B):3925-33. doi: 10.1103/physreve.62.3925.
There is increasing evidence that entropy can induce microphase separation in binary fluid mixtures interacting through hard particle potentials. One such phase consists of alternating two-dimensional liquidlike layers of rods and spheres. We study the transition from a uniform miscible state to this ordered state using computer simulations, and compare results to experiments and theory. We conclude the following: (1) There is stable entropy driven microphase separation in mixtures of parallel rods and spheres. (2) Adding spheres smaller than the rod length decreases the total volume fraction needed for the formation of a layered phase, and therefore small spheres effectively stabilize the layered phase; the opposite is true for large spheres. (3) The degree of this stabilization increases with increasing rod length.
越来越多的证据表明,熵能够在通过硬粒子势相互作用的二元流体混合物中引发微相分离。其中一种相由交替排列的棒状和球状二维类液层组成。我们使用计算机模拟研究从均匀混溶态到这种有序态的转变,并将结果与实验和理论进行比较。我们得出以下结论:(1) 在平行棒状和球状的混合物中存在稳定的熵驱动微相分离。(2) 添加小于棒长度的球体会降低形成层状相所需的总体积分数,因此小球有效地稳定了层状相;对于大球体则相反。(3) 这种稳定程度随着棒长度的增加而增加。