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一种集成在微流体回路中的交流电动泵,用于快速且可调节的流量控制。

An integrated AC electrokinetic pump in a microfluidic loop for fast and tunable flow control.

作者信息

Studer Vincent, Pepin Anne, Chen Yong, Ajdari Armand

机构信息

Laboratoire de Photonique et Nanostructures, UPR CNRS 20, route de Nozay, F-91460 Marcoussis, France.

出版信息

Analyst. 2004 Oct;129(10):944-9. doi: 10.1039/b408382m. Epub 2004 Aug 9.

Abstract

We have built a dedicated lab on a chip to study the performance of an integrated electrokinetic micropump, driven by a low voltage AC signal. This micropump consists of an array of interdigitated electrodes and is here integrated in a microfluidic loop. We demonstrate that this device can pump continuously and reproducibly electrolyte solutions of low to moderate ionic strength. The pumping speed reaches up to 500 [micro sign]m s(-1) in 20 [micro sign]m deep and 100 [micro sign]m wide channels with a driving signal in the 1-10 kHz range and an amplitude of only a few volts. In addition, we have observed an interesting reversal of the pumping direction at higher frequencies (50-100 kHz). Our device permits a systematic and automated exploration of the influence of the ionic strength thanks to an integrated micromixer.

摘要

我们搭建了一个专门的芯片实验室,用于研究由低压交流信号驱动的集成电动微泵的性能。该微泵由一系列叉指电极组成,集成在一个微流体回路中。我们证明,该装置能够连续且可重复地泵送低至中等离子强度的电解质溶液。在深度为20μm、宽度为100μm的通道中,驱动信号频率在1 - 10kHz范围内,幅度仅为几伏时,泵送速度可达500μm s⁻¹。此外,我们还观察到在较高频率(50 - 100kHz)下泵送方向出现了有趣的反转。由于集成了微混合器,我们的装置能够系统且自动地探究离子强度的影响。

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