Moving polymer droplets on stiffness-gradient surfaces coalesce with bridge height showing two power-law growth stages that transition from capillary to viscoelastic dominance, modulated by velocity ratio and interaction strengths.
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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.
citing papers explorer
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Coalescence of Polymer Droplets Moving on a Surface with Stiffness Gradient
Moving polymer droplets on stiffness-gradient surfaces coalesce with bridge height showing two power-law growth stages that transition from capillary to viscoelastic dominance, modulated by velocity ratio and interaction strengths.
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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.