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Electroosmotically Induced Hydraulic Pumping on Microchips: Differential Ion Transport

机译:微芯片上的电渗液压泵:差分离子传输

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The theory behind and operation of an electroosmotically induced hydraulic pump for microfluidic devices is reported. This microchip functional element consists of a tee intersection with one inlet channel and two outlet channels. The inlet channel is maintained at high voltage while one outlet channel is kept at ground and the other channel has no electric potential applied. A pressure-induced flow of buffer is created in both outlet channels of the tee by reducing electroosmosis in the ground channel relative to that of the inlet channel. Spatially selective reduction of electroosmosis is accomplished by coating the walls of the ground channel with a viscous polymer. The pump is shown to differentially transport ions down the two outlet channels. This ion discrimination ability of the pump is examined as a function of an analyte's electrophoretic velocity. In addition, we demonstrate that an anion can be rejected from the ground channel and made to flow only into the field-free channel if the electrophoretic velocity of the anion is greater than the pressure-generated flow in the ground channel. The velocity threshold at which anion rejection occurs can be selectively tuned by changing the flow resistance in the field-free channel relative to the ground channel.
机译:报道了用于微流体装置的电渗感应液压泵的原理和操作。该微芯片功能元件由带有一个入口通道和两个出口通道的三通组成。入口通道保持高电压,而一个出口通道保持接地,另一通道未施加电势。相对于入口通道,通过减少地面通道中的电渗作用,在三通的两个出口通道中产生了压力引起的缓冲液流。电渗透的空间选择性降低是通过用粘性聚合物涂覆地面通道壁来实现的。如图所示,该泵可沿两个出口通道差分传输离子。根据分析物的电泳速度检查泵的离子识别能力。此外,我们证明,如果阴离子的电泳速度大于在地面通道中产生的压力,则阴离子可以从地面通道中排除并仅流入无电场通道。可以通过更改无磁场通道中相对于地面通道的流阻来选择性地调整发生阴离子排斥的速度阈值。

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