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利用切换电渗流的微流体T型混合器。

Microfluidic T-form mixer utilizing switching electroosmotic flow.

作者信息

Lin Che-Hsin, Fu Lung-Ming, Chien Yu-Sheng

机构信息

Department of Mechanical and Electromechanical Engineering, National Sun Yat-sen University, Kaohsiung, Taiwan 804.

出版信息

Anal Chem. 2004 Sep 15;76(18):5265-72. doi: 10.1021/ac0494782.

Abstract

This paper presents a microfluidic T-form mixer utilizing alternatively switching electroosmotic flow. The microfluidic device is fabricated on low-cost glass slides using a simple and reliable fabrication process. A switching DC field is used to generate an electroosmotic force which simultaneously drives and mixes the fluid samples. The proposed design eliminates the requirements for moving parts within the microfluidic device and delicate external control systems. Two operation modes, namely, a conventional switching mode and a novel pinched switching mode, are presented. Computer simulation is employed to predict the mixing performance attainable in both operation modes. The simulation results are then compared to those obtained experimentally. It is shown that a mixing performance as high as 97% can be achieved within a mixing distance of 1 mm downstream from the T-junction when a 60 V/cm driving voltage and a 2-Hz switching frequency are applied in the pinched switching operation mode. This study demonstrates how the driving voltage and switching frequency can be optimized to yield an enhanced mixing performance. The novel methods presented in this study provide a simple solution to mixing problems in the micro-total-analysis-systems field.

摘要

本文介绍了一种利用交替切换电渗流的微流控T型混合器。该微流控装置采用简单可靠的制造工艺在低成本玻璃载片上制造。通过切换直流电场产生电渗力,同时驱动和混合流体样本。所提出的设计消除了微流控装置内运动部件以及精密外部控制系统的需求。介绍了两种操作模式,即传统切换模式和新型夹断切换模式。采用计算机模拟来预测两种操作模式下可实现的混合性能。然后将模拟结果与实验结果进行比较。结果表明,在夹断切换操作模式下,当施加60 V/cm的驱动电压和2 Hz的切换频率时,在T型交叉点下游1 mm的混合距离内可实现高达97%的混合性能。本研究展示了如何优化驱动电压和切换频率以提高混合性能。本研究中提出的新方法为微全分析系统领域的混合问题提供了一种简单的解决方案。

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