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Visualizing the transient electroosmotic flow and measuring the zeta potential of microchannels with a micro-PIV technique

机译:可视化瞬时电渗流并使用micro-PIV技术测量微通道的Zeta电位

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We have demonstrated a transient micro particle image velocimetry (micro-PIV) technique to measure the temporal development of electroosmotic flow in microchannels. Synchronization of different trigger signals for the laser, the CCD camera, and the high-voltage switch makes this measurement possible with a conventional micro-PIV setup. Using the transient micro-PIV technique, we have further proposed a method on the basis of inertial decoupling between the particle electrophoretic motion and the fluid electroosmotic flow to determine the electrophoretic component in the particle velocity and the zeta potential of the channel wall. It is shown that using the measured zeta potentials, the theoretical predictions agree well with the transient response of the electroosmotic velocities measured in this work. (c) 2006 American Institute of Physics.
机译:我们已经证明了瞬态微粒图像测速(micro-PIV)技术来测量微通道中电渗流的时间发展。激光器,CCD摄像机和高压开关的不同触发信号的同步使得使用传统的micro-PIV设置可以进行此测量。使用瞬态微PIV技术,我们进一步提出了一种基于粒子电泳运动与流体电渗流之间惯性解耦的方法,以确定粒子速度和通道壁的Zeta电位中的电泳成分。结果表明,使用测得的ζ电位,理论预测与这项工作中测得的电渗速度的瞬态响应非常吻合。 (c)2006年美国物理研究所。

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