Tao Ye, Ren Yukun, Liu Weiyu, Wu Yupan, Jia Yankai, Lang Qi, Jiang Hongyuan
School of Mechatronics Engineering, Harbin Institute of Technology, Harbin, P. R. China.
State Key Laboratory of Fluid Power Transmission and Control, Zhe Jiang University, Hang Zhou, P.R. China.
Electrophoresis. 2016 May;37(10):1326-36. doi: 10.1002/elps.201500487. Epub 2016 Mar 23.
By increasing the number of floating electrodes or enlarging the width of single floating electrode, this work provides effective ways to strongly improve the particle trapping performance of induced charge electroosmosis (ICEO). Particle trapping with double or triple separate narrow floating electrodes increases the effective actuating range of ICEO flow and therefore enhance the optimum trapping ability to be 1.63 or 2.34 times of that with single narrow electrode (width of L=200μm), and the ideal trapping frequency is independent of the electrode number due to the mutual independence of electrochemical ion relaxation over each electrode. Furthermore, using a single wide floating electrode with the effective width equal to three separate narrow floating electrodes (L=600μm) instead of a single narrow one slightly lowers the ideal trapping frequency due to an increase in the characteristic polarization length, but the trapping performance is only up to 1.59 times of that with original single narrow electrode, implying that vertical channel confinement effect may severely suppresses the effective actuating range of ICEO flow and renders the trapping performance not as expected. Trapping experiments over wide floating electrode with different channel height were carried out, showing that the trapping performance increases by correctly increasing the channel height.
通过增加浮动电极的数量或增大单个浮动电极的宽度,这项工作提供了有效方法来大幅提高感应电荷电渗(ICEO)的粒子捕获性能。使用双个或三个单独的窄浮动电极进行粒子捕获,增加了ICEO流的有效驱动范围,从而使最佳捕获能力提高到使用单个窄电极(宽度L = 200μm)时的1.63倍或2.34倍,并且由于每个电极上电化学离子弛豫的相互独立性,理想捕获频率与电极数量无关。此外,使用有效宽度等于三个单独窄浮动电极(L = 600μm)的单个宽浮动电极代替单个窄浮动电极,由于特征极化长度增加,理想捕获频率略有降低,但捕获性能仅为原始单个窄电极的1.59倍,这意味着垂直通道限制效应可能会严重抑制ICEO流的有效驱动范围,并使捕获性能不如预期。对具有不同通道高度的宽浮动电极进行了捕获实验,结果表明通过适当增加通道高度,捕获性能会提高。