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Comparison of the analytical performance of electrophoresis microchannels fabricated in PDMS glass and polyester-toner

机译:用PDMS玻璃和聚酯色粉制造的电泳微通道的分析性能比较

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摘要

This paper compares the analytical performance of microchannels fabricated in PDMS, glass, and polyester-toner for electrophoretic separations. Glass and PDMS chips were fabricated using well-established photolithographic and replica-molding procedures, respectively. PDMS channels were sealed against three different types of materials: native PDMS, plasma-oxidized PDMS, and glass. Polyester-toner chips were micromachined by a direct-printing process using an office laser printer. All microchannels were fabricated with similar dimensions according to the limitations of the direct-printing process (width/depth 150 μm/12 μm). LIF was employed for detection to rule out any losses in separation efficiency due to the detector configuration. Two fluorescent dyes, coumarin and fluorescein, were used as model analytes. Devices were evaluated for the following parameters related to electrophoretic separations: EOF, heat dissipation, injection reproducibility, separation efficiency, and adsorption to channel wall.
机译:本文比较了用PDMS,玻璃和聚酯色粉制造的微通道用于电泳分离的分析性能。玻璃和PDMS芯片分别使用公认的光刻和复制模制程序制造。 PDMS通道针对三种不同类型的材料进行了密封:天然PDMS,等离子氧化PDMS和玻璃。使用办公室激光打印机通过直接打印工艺对聚酯色粉芯片进行微加工。根据直接打印过程的限制(宽度/深度150μm/ 12μm),所有微通道的尺寸均相似。 LIF用于检测,以排除由于检测器配置而导致的分离效率损失。两种荧光染料香豆素和荧光素被用作模型分析物。对设备进行了以下与电泳分离有关的参数评估:EOF,散热,进样重现性,分离效率和对通道壁的吸附。

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