Ovchinnikova Kate, Pollack Gerald H
Department of Bioengineering, University of Washington, Box 355061, Seattle, Washington 98195, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Mar;79(3 Pt 2):036117. doi: 10.1103/PhysRevE.79.036117. Epub 2009 Mar 30.
When left overnight undisturbed in a covered beaker, suspensions of polystyrene microspheres were found to undergo a distinctive kind of macroscopically visible phase separation. Microspheres migrated radially, leaving a vertically oriented cylinder near the center of the beaker that was devoid of microspheres. Cylinder formation was preceded by formation of a microsphere-free plate at the suspension surface, which may be the precursor of the cylinder. The cylindrical phase separation was found to depend on illumination, which suggests that low-level photon energy from the laboratory environment is sufficient to drive this surprising pattern formation. So long as suspension parameters were set within certain ranges, the cylindrical pattern occurred regularly.
当聚苯乙烯微球悬浮液在有盖烧杯中静置过夜未受干扰时,发现其会发生一种明显的宏观可见相分离。微球呈放射状迁移,在烧杯中心附近留下一个没有微球的垂直定向圆柱体。在圆柱体形成之前,悬浮液表面会形成一个无微球的平板,这可能是圆柱体的前身。发现圆柱相分离取决于光照,这表明来自实验室环境的低水平光子能量足以驱动这种惊人的图案形成。只要将悬浮参数设置在一定范围内,圆柱图案就会有规律地出现。