Lu Qin, Collins Greg E
Naval Research Laboratory, Chemistry Division, Code 6112, 4555 Overlook Ave., S.W., Washington, DC 20375-5342, USA.
Lab Chip. 2009 Apr 7;9(7):954-60. doi: 10.1039/b816291c. Epub 2009 Jan 13.
A fritless, microchip electroosmotic flow (EOF) pump is microfabricated and demonstrated on a planar soda lime glass substrate to be capable of supplying reasonable flow rates under high back pressures, such as that required for micro-high pressure liquid chromatography (micro-HPLC). The microchip EOF pump is composed of a densely packed microchannel containing 800 nm silica particles and was capable of generating a maximum pressure > 1000 psi ( approximately 7 MPa) and a maximum flow rate of 282 nL/min (aqueous cyclohexylamino alkyl sulfonate (CHES) buffer, 10 mM, pH 9.0, 200 V/cm). Other pumping fluids, such as CHES buffer-acetonitrile mixture (50%, v/v), CHES buffer-methanol mixture (50%, v/v), and pure acetonitrile were also used in a characterization of pump performance that included determinations of the maximum flow rate, maximum pressure, and resulting flow rate against an applied, downstream back pressure. The flow rate under a 200 psi ( approximately 1.4 MPa) back pressure at an applied electric field strength of 250 V/cm ranged from 285 nL/min for aqueous CHES buffer to 44 nL/min for CHES buffer-acetonitrile mixture (50%, v/v), indicating that this EOF pump will meet the future requirements of a micro-HPLC system.
一种无阀微芯片电渗流(EOF)泵在平面钠钙玻璃基板上进行了微加工,并证明其能够在高背压下提供合理的流速,例如微高压液相色谱(micro-HPLC)所需的背压。该微芯片EOF泵由一个装有800纳米二氧化硅颗粒的密集微通道组成,能够产生最大压力>1000 psi(约7 MPa),最大流速为282 nL/分钟(环己基氨基烷基磺酸盐(CHES)缓冲液,10 mM,pH 9.0,200 V/cm)。其他泵送流体,如CHES缓冲液-乙腈混合物(50%,v/v)、CHES缓冲液-甲醇混合物(50%,v/v)和纯乙腈,也用于泵性能表征,包括测定最大流速、最大压力以及针对施加的下游背压产生的流速。在250 V/cm的施加电场强度下,200 psi(约1.4 MPa)背压下的流速范围从CHES缓冲液水溶液的285 nL/分钟到CHES缓冲液-乙腈混合物(50%,v/v)的44 nL/分钟,表明该EOF泵将满足未来微HPLC系统的要求。