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A polymeric capillary electrophoretic microfluidic device for separation and electrospray ionization of small molecules

机译:用于小分子分离和电喷雾电离的聚合物毛细管电泳微流体装置

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We have used an embossed plastic microfluidic system for rapid electrophoretic separation of small molecules and electrospray ionization. We have also visualized the separation of compounds by observation of dyes in microfluidic systems and electrospray from the edge of the device. We used a lithographically produced silicon master to emboss channels in ZEONOR 1020R plastic. An oxygen plasma or chromic acid was used to convert the plastic channel surface from hydrophobic to hydrophilic for the separation of molecules in aqueous solution. The channel was scaled by thermal bonding of a cover piece of the same plastic material. The microfluidic device for electrophoretic separation and fluorescence detection had a separation channel 50 /spl mu/m wide, 20 /spl mu/m deep and 3.0 cm long. This was used to separate two dye molecules, Rhodamine B and Texas Red. The microfluidic device for electrospray ionization directly from the chip had a separation channel 30 /spl mu/m wide, 10 /spl mu/m deep, and 10 /spl mu/m wide, terminating in a nozzle-like pyramid fabricated at the edge of device. The sample volume injected through the cross junction for fluorescence detection device was approximately 1.2 nl and two dyes were separated within 8 seconds with the application of an electric field 300 V/cm.
机译:我们已使用浮雕塑料微流体系统对小分子进行快速电泳分离并进行电喷雾电离。我们还通过观察微流控系统中的染料和从设备边缘进行电喷雾观察到了化合物的分离。我们使用光刻生产的硅母盘在ZEONOR 1020R塑料中压花通道。使用氧等离子体或铬酸将塑料通道表面从疏水性转变为亲水性,以分离水溶液中的分子。通过热粘合相同塑料材料的覆盖层来缩放通道。用于电泳分离和荧光检测的微流体装置具有50 /splμm/ m宽,20 /splμm/ m深和3.0cm长的分离通道。这用于分离两个染料分子,若丹明B和德克萨斯红。直接从芯片进行电喷雾电离的微流控装置具有30 / spl mu / m宽,10 / spl mu / m深和10 / spl mu / m宽的分离通道,终止于在边缘制造的喷嘴状棱锥设备。通过用于荧光检测装置的交叉结注入的样品体积约为1.2 nl,并且在施加300 V / cm电场的情况下,在8秒内分离了两种染料。

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