Steering droplets on substrates using moving steps in wettability

2021 | journal article

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​Steering droplets on substrates using moving steps in wettability​
Grawitter, J. & Stark, H. ​ (2021) 
Soft Matter17(9) pp. 2454​-2467​.​ DOI: https://doi.org/10.1039/D0SM02082F 

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Authors
Grawitter, Josua; Stark, Holger 
Abstract
We use the boundary element method (BEM) and the Cox–Voinov law to study the motion of droplets on a substrate with a moving wettability profile. Under the right conditions, droplets surf.
Droplets move on substrates with a spatio-temporal wettability pattern as generated, for example, on light-switchable surfaces. To study such cases, we implement the boundary-element method to solve the governing Stokes equations for the fluid flow field inside and on the surface of a droplet and supplement it by the Cox–Voinov law for the dynamics of the contact line. Our approach reproduces the relaxation of an axisymmetric droplet in experiments, which we initiate by instantaneously switching the uniform wettability of a substrate quantified by the equilibrium contact angle. In a step profile of wettability the droplet moves towards higher wettability. Using a feedback loop to keep the distance or offset between step and droplet center constant, induces a constant velocity with which the droplet surfs on the wettability step. We analyze the velocity in terms of droplet offset and step width for typical wetting parameters. Moving instead the wettability step with constant speed, we determine the maximally possible droplet velocities under various conditions. The observed droplet speeds agree with the values from the feedback study for the same positive droplet offset.
We use the boundary element method (BEM) and the Cox–Voinov law to study the motion of droplets on a substrate with a moving wettability profile. Under the right conditions, droplets surf.
Droplets move on substrates with a spatio-temporal wettability pattern as generated, for example, on light-switchable surfaces. To study such cases, we implement the boundary-element method to solve the governing Stokes equations for the fluid flow field inside and on the surface of a droplet and supplement it by the Cox–Voinov law for the dynamics of the contact line. Our approach reproduces the relaxation of an axisymmetric droplet in experiments, which we initiate by instantaneously switching the uniform wettability of a substrate quantified by the equilibrium contact angle. In a step profile of wettability the droplet moves towards higher wettability. Using a feedback loop to keep the distance or offset between step and droplet center constant, induces a constant velocity with which the droplet surfs on the wettability step. We analyze the velocity in terms of droplet offset and step width for typical wetting parameters. Moving instead the wettability step with constant speed, we determine the maximally possible droplet velocities under various conditions. The observed droplet speeds agree with the values from the feedback study for the same positive droplet offset.
Issue Date
2021
Journal
Soft Matter 
ISSN
1744-683X
eISSN
1744-6848
Language
English

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