Razunguzwa Trust T, Timperman Aaron T
Department of Chemistry, West Virginia University, P.O Box 6045, Morgantown, West Virginia 26505, USA.
Anal Chem. 2004 Mar 1;76(5):1336-41. doi: 10.1021/ac034956e.
A fritless electroosmotic pump with reduced pH dependence has been fabricated on a glass microchip and its performance characterized. The chip design consists of two 500-microm channels, one packed with anion exchange beads and the other packed with cation exchange beads, which produce convergent electroosmotic flow streams. The electroosmotically pumped solution flows away from the intersection of the two pumping channels through a field-free channel. This simple design allows for the production of a fritless electroosmotic pump and easy replacement of the ion exchange beads whose charged surfaces generate the flow. The pump was found to produce volumetric flow rates of up to 2 microL/min for an applied voltage of 3 kV at a pH of 6.8. Moreover, the electroosmotic pump can generate high flow rates over an extended pH range of at least 2-12, a significant advantage over previously fabricated electroosmotic pumps, which typically have a more limited range in which they can achieve high flow rates.
一种pH依赖性降低的无烧结电渗泵已在玻璃微芯片上制造出来,并对其性能进行了表征。芯片设计包括两条500微米的通道,一条填充阴离子交换珠,另一条填充阳离子交换珠,它们产生汇聚的电渗流。电渗泵输送的溶液通过一条无电场通道从两条泵送通道的交汇处流出。这种简单的设计允许制造无烧结电渗泵,并便于更换其带电表面产生流动的离子交换珠。发现在pH为6.8时,施加3 kV电压时,该泵的体积流速可达2微升/分钟。此外,该电渗泵可以在至少2至12的宽pH范围内产生高流速,这是相对于先前制造的电渗泵的一个显著优势,后者通常在实现高流速方面的范围更有限。