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首页> 外文期刊>Analytical chemistry >Electroosmotic Flow Control of Fluids on a Capillary Electrophoresis Microdevice Using an Applied External Voltage
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Electroosmotic Flow Control of Fluids on a Capillary Electrophoresis Microdevice Using an Applied External Voltage

机译:使用外加电压对毛细管电泳微器件上的流体进行电渗流控制

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摘要

Independent control of electroosmosis is important for separation science techniques such as capillary zone electrophoresis and for the movement of fluids on microdevices. A capillary electrophoresis microdevice is demonstrated which provides more efficient control of electroosmosis with an applied external voltage field. The device is fabricated in a glass substrate where a 5.0 cm separation channel (30 μm wide) is paralleled with two embedded electrodes positioned 50 μm away in the substrate. With this structure, greatly reduced applied external potentials (≤120 V compared to tens of kilovolts) still effectively altered electroosmosis. The efficiency for the control of electroosmosis by the applied external field is improved by approximately 40 times over published values.
机译:电渗的独立控制对于诸如毛细管区带电泳之类的分离科学技术以及微设备上的流体运动非常重要。演示了毛细管电泳微器件,该器件可通过施加的外部电压场更有效地控制电渗。该设备在玻璃基板中制造,其中5.0厘米的分离通道(宽30μm)与位于基板中50μm处的两个嵌入式电极平行。采用这种结构,所施加的外部电势大大降低(与数十千伏相比,≤120 V)仍然有效地改变了电渗。通过施加的外部电场控制电渗的效率比已发布的值提高了约40倍。

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