Naga Abhinav, Butt Hans-Jürgen, Vollmer Doris
Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.
Langmuir. 2021 Nov 9;37(44):13012-13017. doi: 10.1021/acs.langmuir.1c02085. Epub 2021 Oct 28.
The force required to detach a particle from a liquid-fluid interface is a direct measure of the capillary adhesion between the particle and the interface. Analytical expressions for the detachment force are available but are limited to nonrotating particles. In this work, we derive analytical expressions for the force required to detach a rotating spherical particle from a liquid-fluid interface. Our theory predicts that the rotation reduces the detachment force when there is a finite contact angle hysteresis between the particle and the liquid. For example, the force required to detach a particle with an advancing contact angle of 120° and a receding contact angle of 80° (e.g., polydimethylsiloxane particle at a water-air interface) is expected to be 25% lower when the particle rotates while it is detached.
将颗粒从液-液界面分离所需的力是颗粒与界面之间毛细粘附力的直接度量。虽然已有分离力的解析表达式,但仅限于非旋转颗粒。在本工作中,我们推导了将旋转球形颗粒从液-液界面分离所需力的解析表达式。我们的理论预测,当颗粒与液体之间存在有限的接触角滞后时,旋转会降低分离力。例如,对于前进接触角为120°、后退接触角为80°的颗粒(如在水-空气界面的聚二甲基硅氧烷颗粒),预计在分离时颗粒旋转时所需的力会降低25%。