Dynamic Wettability Modulation of Textured, Soft and LIS Interfaces Using Electrowetting

Fuente: arXiv
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Main Authors: J., Deepak, Chakraborty, Suman, Ganar, Shubham S., Das, Arindam
Format: Preprint
Published: 2026
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author J., Deepak
Chakraborty, Suman
Ganar, Shubham S.
Das, Arindam
author_facet J., Deepak
Chakraborty, Suman
Ganar, Shubham S.
Das, Arindam
contents Electrowetting on textured and lubricant infused surfaces is conventionally expected to promote enhanced droplet spreading by reducing apparent contact angles. Contrary to this intuition, we report rapid tangential droplet ejection at applied DC voltages on specific microtextured, lubricant infused surfaces. Using high speed imaging and a precisely controlled electrowetting setup, we reveal the dependence of droplet dynamics on surface topology, wetting state, and the presence of a lubricant. On densely textured thick PDMS substrates of post spacing 5 to 10 um in a low hysteresis non-wetting Cassie state, and on all lubricant infused textured surfaces, droplets experience sudden lateral motion and eventual detachment. We attribute this counterintuitive phenomenon to unbalanced electrocapillary forces at the contact line combined with minimal pinning, which allows asymmetries in electric stresses to translate directly into net lateral motion. In contrast, Wenzel state droplets or surfaces with larger texture spacing exhibit conventional spreading with strong adhesion. By capturing the fundamental interplay among electrostatic driving forces, contact line pinning, and interfacial mobility, our results provide a new paradigm for controlled droplet transport and ejection in electrowetting systems mediated by dense micro posts and lubricant induced interfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2603_05297
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Dynamic Wettability Modulation of Textured, Soft and LIS Interfaces Using Electrowetting
J., Deepak
Chakraborty, Suman
Ganar, Shubham S.
Das, Arindam
Soft Condensed Matter
Fluid Dynamics
Electrowetting on textured and lubricant infused surfaces is conventionally expected to promote enhanced droplet spreading by reducing apparent contact angles. Contrary to this intuition, we report rapid tangential droplet ejection at applied DC voltages on specific microtextured, lubricant infused surfaces. Using high speed imaging and a precisely controlled electrowetting setup, we reveal the dependence of droplet dynamics on surface topology, wetting state, and the presence of a lubricant. On densely textured thick PDMS substrates of post spacing 5 to 10 um in a low hysteresis non-wetting Cassie state, and on all lubricant infused textured surfaces, droplets experience sudden lateral motion and eventual detachment. We attribute this counterintuitive phenomenon to unbalanced electrocapillary forces at the contact line combined with minimal pinning, which allows asymmetries in electric stresses to translate directly into net lateral motion. In contrast, Wenzel state droplets or surfaces with larger texture spacing exhibit conventional spreading with strong adhesion. By capturing the fundamental interplay among electrostatic driving forces, contact line pinning, and interfacial mobility, our results provide a new paradigm for controlled droplet transport and ejection in electrowetting systems mediated by dense micro posts and lubricant induced interfaces.
title Dynamic Wettability Modulation of Textured, Soft and LIS Interfaces Using Electrowetting
topic Soft Condensed Matter
Fluid Dynamics
url https://arxiv.org/abs/2603.05297