Interaction of Droplets Separated by an Elastic Film.

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Bibliographic Details
Title: Interaction of Droplets Separated by an Elastic Film.
Authors: Tianshu Liu1, Xuejuan Xu2, Nadermann, Nichole3, Zhenping He3, Jagota, Anand3, Chung-Yuen Hui1 ch45@cornell.edu
Source: Langmuir. Jan2017, Vol. 33 Issue 1, p75-81. 7p.
Subjects: Elasticity, Droplets, Thin films, Deformations (Mechanics), Artificial membranes
Abstract: The Laplace pressure of a droplet placed on one side of an elastic thin film can cause significant deformation in the form of a bulge on its opposite side. Here, we show that this deformation can be detected by other droplets suspended on the opposite side of the film, leading to interaction between droplets separated by the solid (but deformable) film. The interaction is repulsive when the drops have a large overlap and attractive when they have a small overlap. Thus, if two identical droplets are placed right on top of each other (one on either side of the thin film), they tend to repel each other, eventually reaching an equilibrium configuration where there is a small overlap. This observation can be explained by analyzing the energy landscape of the droplets interacting via an elastically deformed film. We further demonstrate this idea by designing a pattern comprising a big central drop with satellite droplets. This phenomenon can lead to techniques for directed motion of droplets confined to one side of a thin elastic membrane by manipulations on the other side. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
Description
Abstract:The Laplace pressure of a droplet placed on one side of an elastic thin film can cause significant deformation in the form of a bulge on its opposite side. Here, we show that this deformation can be detected by other droplets suspended on the opposite side of the film, leading to interaction between droplets separated by the solid (but deformable) film. The interaction is repulsive when the drops have a large overlap and attractive when they have a small overlap. Thus, if two identical droplets are placed right on top of each other (one on either side of the thin film), they tend to repel each other, eventually reaching an equilibrium configuration where there is a small overlap. This observation can be explained by analyzing the energy landscape of the droplets interacting via an elastically deformed film. We further demonstrate this idea by designing a pattern comprising a big central drop with satellite droplets. This phenomenon can lead to techniques for directed motion of droplets confined to one side of a thin elastic membrane by manipulations on the other side. [ABSTRACT FROM AUTHOR]
ISSN:07437463
DOI:10.1021/acs.langmuir.6b03600