Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Phys Rev Lett. 2012 Jun 1;108(22):228303. doi: 10.1103/PhysRevLett.108.228303.
We investigate the influence of particle shape on the bending rigidity of colloidal monolayer membranes (CMMs) and on evaporative processes associated with these membranes. Aqueous suspensions of colloidal particles are confined between glass plates and allowed to evaporate. Confinement creates ribbonlike air-water interfaces and facilitates measurement and characterization of CMM geometry during drying. Interestingly, interfacial buckling events occur during evaporation. Extension of the description of buckled elastic membranes to our quasi-2D geometry enables the determination of the ratio of CMM bending rigidity to its Young's modulus. Bending rigidity increases with increasing particle anisotropy, and particle deposition during evaporation is strongly affected by membrane elastic properties. During drying, spheres are deposited heterogeneously, but ellipsoids are not. Apparently, increased bending rigidity reduces contact line bending and pinning and induces uniform deposition of ellipsoids. Surprisingly, suspensions of spheres doped with a small number of ellipsoids are also deposited uniformly.
我们研究了颗粒形状对胶体单层膜(CMM)的弯曲刚度以及与这些膜相关的蒸发过程的影响。胶体粒子的水悬浮液被限制在玻璃片之间并允许蒸发。限制形成了带状的气-水界面,并有助于在干燥过程中测量和表征 CMM 的几何形状。有趣的是,在蒸发过程中会发生界面屈曲事件。将弯曲弹性膜的描述扩展到我们的准 2D 几何形状,使我们能够确定 CMM 弯曲刚度与杨氏模量的比值。弯曲刚度随颗粒各向异性的增加而增加,并且蒸发过程中的颗粒沉积强烈受到膜弹性性质的影响。在干燥过程中,球体不均匀沉积,但椭球体则不是。显然,增加的弯曲刚度会降低接触线的弯曲和固定,并诱导椭球体的均匀沉积。令人惊讶的是,掺杂少量椭球体的球体悬浮液也会均匀沉积。