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ac electroosmotic pumping induced by noncontact external electrodes

机译:非接触式外部电极引起的交流电渗透泵浦

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摘要

Electroosmotic (EO) pumps based on dc electroosmosis is plagued by bubble generation and other electrochemical reactions at the electrodes at voltages beyond 1 V for electrolytes. These disadvantages limit their throughput and offset their portability advantage over mechanical syringe or pneumatic pumps. ac electroosmotic pumps at high frequency (>100 kHz) circumvent the bubble problem by inducing polarization and slip velocity on embedded electrodes, but they require complex electrode designs to produce a net flow. We report a new high-throughput ac EO pump design based on induced-polarization on the entire channel surface instead of just on the electrodes. Like dc EO pumps, our pump electrodes are outside of the load section and form a cm-long pump unit consisting of three circular reservoirs (3 mm in diameter) connected by a 1×1 mm channel. The field-induced polarization can produce an effective Zeta potential exceeding 1 V and an ac slip velocity estimated as 1 mm∕sec or higher, both one order of magnitude higher than earlier dc and ac pumps, giving rise to a maximum throughput of 1 μl∕sec. Polarization over the entire channel surface, quadratic scaling with respect to the field and high voltage at high frequency without electrode bubble generation are the reasons why the current pump is superior to earlier dc and ac EO pumps.
机译:基于直流电渗的电渗(EO)泵在电解液产生的电压超过1 V的情况下受到电极处气泡的产生和其他电化学反应的困扰。这些缺点限制了它们的产量,并抵消了其相对于机械注射器或气动泵的便携性优势。交流电高频泵(> 100 kHz)通过在嵌入式电极上引起极化和滑动速度来避免气泡问题,但它们需要复杂的电极设计才能产生净流量。我们报告了一种新的高通量交流电EO泵设计,该设计基于在整个通道表面而不是仅在电极上的感应极化。与直流EO泵一样,我们的泵电极也位于负载段的外部,并形成一个厘米级的泵单元,该泵单元由三个圆形容器(直径3 mm)组成,这些容器通过1×1 mm通道连接。场致极化可以产生超过1 V的有效Zeta电势,并且估计的交流滑移速度为1 mm ∕ sec或更高,均比早期的dc和ac泵高一个数量级,从而导致最大通量为1μl ∕秒整个通道表面的极化,相对于电场的二次缩放以及高频下的高电压而不会产生电极气泡,这是电流泵优于早期的直流和交流EO泵的原因。

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