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Published on: June 23, 2017
Quincke Oscillations of Colloids at Planar Electrodes
Zhengyan Zhang1, Hang Yuan2, Yong Dou1
1Department of Chemical Engineering, Columbia University, New York, New York 10027, USA.
Abstract:
Dielectric particles in weakly conducting fluids rotate spontaneously when subject to strong electric fields. Such Quincke rotation near a plane electrode leads to particle translation that enables physical models of active matter. In this Letter, we show that Quincke rollers can also exhibit oscillatory dynamics, whereby particles move back and forth about a fixed location. We explain how oscillations arise for micron-scale particles commensurate with the thickness of a field-induced boundary layer in the nonpolar electrolyte. This work enables the design of colloidal oscillators.
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