Abstract
Making small liquid droplets move spontaneously on solid surfaces is a key challenge in lab-on-chip and heat exchanger technologies. Here, we report that a substrate curvature gradient can accelerate micro- and nanodroplets to high speeds on both hydrophilic and hydrophobic substrates. Experiments for microscale water droplets on tapered surfaces show a maximum speed of 0.42m/s, 2 orders of magnitude higher than with a wettability gradient. We show that the total free energy and driving force exerted on a droplet are determined by the substrate curvature and substrate curvature gradient, respectively. Using molecular dynamics simulations, we predict nanoscale droplets moving spontaneously at over 100m/s on tapered surfaces. © 2014 American Physical Society.
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CITATION STYLE
Lv, C., Chen, C., Chuang, Y. C., Tseng, F. G., Yin, Y., Grey, F., & Zheng, Q. (2014). Substrate curvature gradient drives rapid droplet motion. Physical Review Letters, 113(2). https://doi.org/10.1103/PhysRevLett.113.026101
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