| Literature DB >> 25828535 |
Yukun Ren1, Weiyu Liu, Yankai Jia, Ye Tao, Jinyou Shao, Yucheng Ding, Hongyuan Jiang.
Abstract
Position-controllable trapping of particles on the surface of a bipolar metal strip by induced-charge electroosmotic (ICEO) flow is presented herein. We demonstrate a nonlinear ICEO slip profile on the electrode surface accounting for stable particle trapping behaviors above the double-layer relaxation frequency, while no trapping occurs in the DC limit as a result of a strong upward fluidic drag induced by a linear ICEO slip profile. By extending an AC-flow field effect transistor from the DC limit to the AC field, we reveal that fixed-potential ICEO exceeding RC charging frequency can adjust the particle trapping position flexibly by generating controllable symmetry breaking in a vortex flow pattern. Our results open up new opportunities to manipulate microscopic objects in modern microfluidic systems by using ICEO.Year: 2015 PMID: 25828535 DOI: 10.1039/c5lc00058k
Source DB: PubMed Journal: Lab Chip ISSN: 1473-0189 Impact factor: 6.799