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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >A method for simultaneously determining the zeta potentials of the channel surface and the tracer particles using microparticle image velocimetry technique.
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A method for simultaneously determining the zeta potentials of the channel surface and the tracer particles using microparticle image velocimetry technique.

机译:一种使用微粒图像测速技术同时确定通道表面和示踪剂粒子的ζ电势的方法。

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摘要

The zeta potentials of channel surfaces and tracer particles are of importance to the design of electrokinetic microfluidic devices, the characterization of channel materials, and the quantification of the microparticle image velocimetry (microPIV) measurement of EOFs. A method is proposed to simultaneously measure the zeta potentials of the channel surface and the tracer particles in aqueous solutions using the microPIV technique. Through the measurement of the steady velocity distributions of the tracer particles in both open- and closed-end rectangular microchannels under the same water chemistry condition, the electrophoretic velocity of the tracer particles and the EOF field of the microchannel are determined using the expressions derived in this study for the velocity distributions of charged tracer particles in the open- and closed-end rectangular microchannels. Thus, the zeta potentials of the tracer particles and the channel surfaces are simultaneously obtained using the least-square method tofit the microPIV measured velocity distribution of the tracer particles. Measurements were carried out with a microPIV system to determine the zeta potentials of the channel wall and the fluorescent tracer particles in deionized water and sodium chloride and boric acid solutions of various concentrations.
机译:通道表面和示踪颗粒的zeta电位对于电动微流体装置的设计,通道材料的表征以及EOF的微粒图像测速(microPIV)测量的量化非常重要。提出了一种使用microPIV技术同时测量水溶液中通道表面和示踪剂粒子的ζ电位的方法。在相同的水化学条件下,通过测量开放式和封闭式矩形微通道中示踪剂颗粒的稳定速度分布,可使用下式推导确定示踪剂颗粒的电泳速度和微通道的EOF场。这项研究对带电的示踪剂粒子在开放式和封闭式矩形微通道中的速度分布进行了研究。因此,使用最小二乘法同时拟合示踪颗粒的microPIV测量速度分布,即可同时获得示踪颗粒和通道表面的Zeta电位。用microPIV系统进行测量,以确定去离子水,氯化钠和各种浓度的硼酸溶液中通道壁的zeta电位和荧光示踪剂颗粒。

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