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“惰性”胶体上的毛细作用力:介电泳的物理类比。

Capillary force on an 'inert' colloid: a physical analogy to dielectrophoresis.

作者信息

Barakat Joseph M, Squires Todd M

机构信息

Department of Chemical Engineering, University of California, Santa Barbara, California 93106, USA.

出版信息

Soft Matter. 2021 Mar 28;17(12):3417-3442. doi: 10.1039/d0sm02143a. Epub 2021 Mar 1.

Abstract

"Inert" colloids are μm-scale particles that create no distortion when trapped at a planar fluid-fluid interface. When placed in a curved interface, however, such colloids can create interfacial distortions of quadrupolar symmetry - so-called "induced capillary quadrupoles." The present work explores the analogy between capillary quadrupoles and electric dipoles, and the forces exerted on them by a symmetry-breaking gradient. In doing so, we weigh in on an outstanding debate as to whether a curvature gradient can induce a capillary force on an inert colloid. We argue that this force exists, for the opposite would imply that all dielectrophoretic forces vanish in two dimensions (2D). We justify our claim by solving 2D Laplace problems of electrostatics and capillary statics involving a single particle placed within a large circular shell with an imposed gradient. We show that the static boundary condition on the outer shell must be considered when applying the principle of virtual work to compute the force on the particle, as verified by a direct calculation of this force through integration of the particle stresses. Our investigation highlights some of the subtleties that emerge in virtual work calculations of capillary statics and electrostatics, thereby clarifying and extending previous results in the field. The broader implication of our results is that inert particles - including particles with planar, pinned contact lines and equilibrium contact angles - interact through interparticle capillary forces that scale quadratically with the deviatoric curvature of the host interface, contrary to recent claims made in the literature.

摘要

“惰性”胶体是微米级的颗粒,当被困在平面流体 - 流体界面时不会产生变形。然而,当放置在弯曲界面中时,此类胶体可产生四极对称的界面变形——即所谓的“诱导毛细管四极子”。本研究探讨了毛细管四极子与电偶极子之间的类比,以及对称破缺梯度对它们施加的力。在此过程中,我们参与了一场关于曲率梯度是否能在惰性胶体上诱导毛细作用力的激烈辩论。我们认为这种力是存在的,因为相反的情况将意味着所有介电泳力在二维(2D)中都会消失。我们通过求解静电学和毛细管静力学的二维拉普拉斯问题来证明我们的观点,这些问题涉及放置在具有外加梯度的大圆形壳体内的单个粒子。我们表明,在应用虚功原理计算粒子上的力时,必须考虑外壳上的静态边界条件,这通过对粒子应力进行积分直接计算该力得到了验证。我们的研究突出了毛细管静力学和静电学虚功计算中出现的一些微妙之处,从而澄清并扩展了该领域以前的结果。我们结果的更广泛含义是,惰性粒子——包括具有平面、固定接触线和平衡接触角的粒子——通过与主体界面偏斜曲率成二次比例关系的粒子间毛细作用力相互作用,这与文献中最近的说法相反。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b862/8323820/54c25e84ca79/d0sm02143a-f1.jpg

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