arXiv · 1208.4451
Self-Propelled Motion of a Droplet Induced by Marangoni-driven Spreading
Abstract
We report the generation of directed self-propelled motion of a droplet of aniline oil with a velocity on the order of centimeters per second on an aqueous phase. It is found that, depending on the initial conditions, the droplet shows either circular or beeline motion in a circular Petri dish. The motion of a droplet depends on volume of the droplet and concentration of solution. The velocity decreases when volume of the droplet and concentration of solution increase. Such unique motion is discussed in terms of Marangoni-driven spreading under chemical nonequilibrium. The simulation reproduces the mode of motion in a circular Petri dish.
Explore related subjects
Keep this discovery
Yong-Jun Chen, Yuko Nagamine, Kenichi Yoshikawa. 2012-08-22. Self-Propelled Motion of a Droplet Induced by Marangoni-driven Spreading. https://doi.org/10.1103/physreve.80.016303
Cite the original work for its findings. Save a collection to share your selection of sources.