A gradient-dynamics model for chemically driven running drops derives sustained self-propulsion from a maintained wettability contrast when distinct chemical potentials are imposed via chemostatting.
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Directed droplet motion via surface property gradients provides a versatile approach for fluid transport in applications like digital microfluidics and bio-diagnostics.
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Gradient dynamics model for chemically driven running drops
A gradient-dynamics model for chemically driven running drops derives sustained self-propulsion from a maintained wettability contrast when distinct chemical potentials are imposed via chemostatting.
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Directed droplet motion -- Its versatile nature and anticipated applications
Directed droplet motion via surface property gradients provides a versatile approach for fluid transport in applications like digital microfluidics and bio-diagnostics.