Physics Department, TU Dortmund University, 44221 Dortmund, Germany.
Soft Matter. 2018 Jul 11;14(27):5665-5685. doi: 10.1039/c8sm00316e.
We investigate the deformation of elastic microcapsules adsorbed at liquid-liquid interfaces. An initially spherical elastic capsule at a liquid-liquid interface undergoes circumferential stretching due to the liquid-liquid surface tension and becomes lens- or discus-shaped, depending on its bending rigidity. The resulting elastic capsule deformation is qualitatively similar, but distinct from the deformation of a liquid droplet into a liquid lens at a liquid-liquid interface. We discuss the deformed shapes of droplets and capsules adsorbed at liquid-liquid interfaces for a whole range of different surface elasticities: from droplets (only surface tension) deforming into liquid lenses, droplets with a Hookean membrane (finite stretching modulus, zero bending modulus) deforming into elastic lenses, to microcapsules (finite stretching and bending modulus) deforming into rounded elastic lenses. We calculate capsule shapes at liquid-liquid interfaces numerically using shape equations from nonlinear elastic shell theory. Finally, we present theoretical results for the contact angle (or the capsule height) and the maximal capsule curvature at the three phase contact line. These results can be used to infer information about the elastic moduli from optical measurements. During capsule deformation into a lens-like shape, surface energy of the liquid-liquid interface is converted into elastic energy of the capsule shell giving rise to an overall adsorption energy gain by deformation. Soft hollow capsules exhibit a pronounced increase of the adsorption energy as compared to filled soft particles and, thus, are attractive candidates as foam and emulsion stabilizers.
我们研究了吸附在液-液界面上的弹性微胶囊的变形。由于液-液表面张力的作用,初始为球形的弹性胶囊在液-液界面上会发生周向拉伸,从而形成透镜状或盘状,这取决于其弯曲刚度。由此产生的弹性胶囊变形在定性上是相似的,但与液-液界面上的液滴变形为液透镜不同。我们讨论了吸附在液-液界面上的液滴和胶囊的变形形状,涵盖了各种不同的表面弹性:从只有表面张力的液滴变形为液透镜,到具有胡克弹性膜(有限拉伸模量,零弯曲模量)的液滴变形为弹性透镜,再到具有有限拉伸和弯曲模量的微胶囊变形为圆形弹性透镜。我们使用非线性弹性壳理论的形状方程,通过数值计算来确定液-液界面上的胶囊形状。最后,我们给出了三相接触线处接触角(或胶囊高度)和最大胶囊曲率的理论结果。这些结果可用于从光学测量中推断弹性模量的信息。在胶囊变形为透镜状的过程中,液-液界面的表面能转化为胶囊壳的弹性能,从而导致整体吸附能的增加。与填充的软颗粒相比,柔软的空心胶囊表现出明显的吸附能增加,因此是泡沫和乳液稳定剂的有吸引力的候选者。