Department of Chemistry, University of Florida , Gainesville, Florida 32611-7200, United States.
ACS Nano. 2016 Apr 26;10(4):4637-43. doi: 10.1021/acsnano.6b00939. Epub 2016 Apr 7.
Electroosmotic flow (EOF) is used to pump solutions through microfluidic devices and capillary electrophoresis columns. We describe here an EOF pump based on membrane EOF rectification, an electrokinetic phenomenon we recently described. EOF rectification requires membranes with asymmetrically shaped pores, and conical pores in a polymeric membrane were used here. We show here that solution flow through the membrane can be achieved by applying a symmetrical sinusoidal voltage waveform across the membrane. This is possible because the alternating current (AC) carried by ions through the pore is rectified, and we previously showed that rectified currents yield EOF rectification. We have investigated the effect of both the magnitude and frequency of the voltage waveform on flow rate through the membrane, and we have measured the maximum operating pressure. Finally, we show that operating in AC mode offers potential advantages relative to conventional DC-mode EOF pumps.
电渗流(EOF)用于将溶液通过微流控装置和毛细管电泳柱输送。我们在这里描述了一种基于膜电渗流整流的 EOF 泵,这是我们最近描述的一种电动现象。EOF 整流需要具有非对称形状孔的膜,这里使用了聚合物膜中的锥形孔。我们在这里展示,可以通过在膜的两侧施加对称的正弦电压波形来实现溶液流过膜。之所以如此,是因为离子通过孔携带的交流电(AC)被整流,我们之前曾表明,整流电流会产生电渗流整流。我们研究了电压波形的幅度和频率对膜内流速的影响,并测量了最大工作压力。最后,我们表明,与传统的直流模式 EOF 泵相比,交流模式操作具有潜在的优势。