Fuentes Hernan V, Woolley Adam T
Department of Chemistry and Biochemistry, Brigham Young University, Provo, UT 84602, USA.
Lab Chip. 2007 Nov;7(11):1524-31. doi: 10.1039/b708865e. Epub 2007 Aug 10.
Electrolysis-based micropumps integrated with microfluidic channels in micromachined glass substrates are presented. Photolithography combined with wet chemical etching and thermal bonding enabled the fabrication of multi-layer devices containing electrically actuated micropumps interfaced with sample and mobile phase reservoirs. A stationary phase was deposited on the microchannel walls by coating with 10% (w/w) chlorodimethyloctadecylsilane in toluene. Pressure-balanced injection was implemented by controlling the electrolysis time and voltage applied in the two independent micropumps. Current fluctuations in the micropumps due to the stochastic formation of bubbles on the electrode surfaces were determined to be the main cause of variation between separations. On-chip electrochemical pumping enabled the loading of pL samples with no dead volume between injection and separation. A mobile phase composed of 70% acetonitrile and 30% 50 mM acetate buffer (pH 5.45) was used for the chromatographic separation of three fluorescently labeled amino acids in <40 s with an efficiency of >3000 theoretical plates in a 2.5 cm-long channel. Our results demonstrate the potential of electrochemical micropumps integrated with microchannels to perform rapid chromatographic separations in a microfabricated platform. Importantly, these devices represent a significant step toward the development of miniaturized and fully integrated liquid chromatography systems.
本文介绍了一种集成在微加工玻璃基板微流控通道中的基于电解的微型泵。光刻技术与湿化学蚀刻和热键合相结合,实现了多层器件的制造,该器件包含与样品和流动相储液器相连的电动微型泵。通过在甲苯中用10%(w/w)氯二甲基十八烷基硅烷涂层,将固定相沉积在微通道壁上。通过控制两个独立微型泵中的电解时间和施加的电压来实现压力平衡进样。电极表面气泡的随机形成导致微型泵中的电流波动,这被确定为分离之间变化的主要原因。芯片上的电化学泵能够加载皮升样品,进样和分离之间没有死体积。使用由70%乙腈和30% 50 mM醋酸盐缓冲液(pH 5.45)组成的流动相,在2.5 cm长的通道中,在<40 s内对三种荧光标记的氨基酸进行色谱分离,理论塔板数>3000。我们的结果证明了与微通道集成的电化学微型泵在微制造平台上进行快速色谱分离的潜力。重要的是,这些器件代表了朝着开发小型化和完全集成的液相色谱系统迈出的重要一步。