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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Surface modification of PDMS microchips with poly(ethylene glycol) derivatives for mu TAS applications
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Surface modification of PDMS microchips with poly(ethylene glycol) derivatives for mu TAS applications

机译:用于mu TAS应用的带有聚乙二醇衍生物的PDMS微芯片的表面改性

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摘要

In this work is presented a method for the modification of native PDMS surface in order to improve its applicability as a substrate for microfluidic devices, especially in the analysis of nonpolar analytes. Therefore, poly(ethylene glycol) divinyl ether modified PDMS substrate was obtained by surface modification of native PDMS. The modified substrate was characterized by attenuated total reflectance infrared spectroscopy, water contact angle measurements, and by evaluating the adsorption of rhodamine B and the magnitude of the EOF mobility. The reaction was confirmed by the spectroscopic evaluation. The formation of a well-spread water film over the surface immediately after the modification was an indicative of the modified surface hydrophilicity. This characteristic was maintained for approximately ten days, with a gradual return to a hydrophobic state. Fluorescence assays showed that the nonpolar adsorption property of PDMS was significantly decreased. The EOF mobility obtained was 3.6 x 10 (4) cm(2) V (1) s (1), higher than the typical values found for native PDMS. Due to the better wettability promoted by the modification, the filling of the microchannels with aqueous solutions was facilitated and trapping of air bubbles was not observed.
机译:在这项工作中,提出了一种修饰天然PDMS表面的方法,以提高其作为微流体设备底物的适用性,尤其是在非极性分析物的分析中。因此,通过对天然PDMS的表面改性,获得了聚乙二醇二乙烯基醚改性的PDMS底物。通过衰减的全反射红外光谱,水接触角测量以及通过评估若丹明B的吸附和EOF迁移率的大小来表征改性的基材。通过光谱评价确认了反应。改性后立即在表面上形成均匀分布的水膜,表明改性后的表面亲水性。保持该特性约十天,然后逐渐返回到疏水状态。荧光分析表明,PDMS的非极性吸附性能显着降低。获得的EOF迁移率是3.6 x 10(4)cm(2)V(1)s(1),高于天然PDMS的典型值。由于通过改性促进了更好的润湿性,因此促进了微通道被水溶液填充并且没有观察到气泡的捕获。

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