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Experimental studies of electroosmotic flow dynamics in microfabricated devices during current monitoring experiments

机译:电流监测实验中微型设备中电渗流动力学的实验研究

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Electroosmotic flow (EOF) was monitored in glass microfluidic devices at rates up to 2 Hz with a precision of 0.2-1.0% using a technique based on the periodic photobleaching of a dilute, neutral fluorophore added to the running buffer. This EOF monitoring method was used to examine the performance of the current monitoring technique for measuring an average electroosmotic flow in a microfluidic device with a cross-T design. Flow measurements made with the current monitoring method gave a precision of 0.4-2.2%, but the periodic photobleaching method shows that the current monitoring technique causes changes in EOF as high as 41% during a single experiment. The periodic photobleaching method for EOF monitoring was also used to study EOF in channels on opposite sides of a cross-channel intersection. The opposite channels were shown to exhibit substantially different EOF dynamics during a current monitoring experiment as well as different steady-state EOF rates during normal operating conditions. [References: 48]
机译:使用基于添加到运行缓冲液中的稀中性荧光团进行定期光漂白的技术,在玻璃微流体设备中以2 Hz的速率监测电渗流(EOF),精度为0.2-1.0%。此EOF监视方法用于检查当前的监视技术的性能,该技术用于测量具有cross-T设计的微流体设备中的平均电渗流。使用电流监测方法进行的流量测量的精度为0.4-2.2%,但是定期光漂白方法显示,电流监测技术在单个实验中导致EOF的变化高达41%。用于EOF监测的定期光漂白方法也用于研究跨通道交叉点相对两侧的通道中的EOF。相对的通道显示在电流监控实验中表现出明显不同的EOF动态,并且在正常操作条件下表现出不同的稳态EOF速率。 [参考:48]

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