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Microwave assisted click chemistry on a conductive polymer film

机译:导电聚合物薄膜上的微波辅助点击化学

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Microwave (MW) irradiation has been used to accelerate the functionalization of an azide functional poly(3,4-ethylenedioxythiophene) film by click chemistry. The absorption of MW energy by the conductive polymer has been exploited for localized activation of the reaction on the polymer surface. By use of an alkyne modified fluorescein derivative the reaction conditions have been optimized in a conventional MW oven, enabling the use of different sizes of substrates. The optimization resulted in a reduction of reaction times of approximately 20 h to only 2 min for bulk film functionalization. The method has been applied for anchoring of the chelating agent nitrilotriacetic acid (NTA) on the conductive polymer. The chelating linkage ability of NTA on the surface was investigated through a sandwich ELISA study confirming the selective bonding of a histidine tagged protein.
机译:微波(MW)辐射已用于通过点击化学加速叠氮化物官能的聚(3,4-乙撑二氧噻吩)薄膜的功能化。导电聚合物对MW能量的吸收已被用于在聚合物表面上局部活化反应。通过使用炔烃修饰的荧光素衍生物,反应条件已在常规MW烘箱中进行了优化,从而可以使用不同尺寸的底物。优化使本体膜功能化的反应时间减少了约20小时,仅2分钟。该方法已用于将螯合剂次氮基三乙酸(NTA)锚定在导电聚合物上。通过夹心ELISA研究研究了NTA在表面上的螯合键合能力,证实了组氨酸标签蛋白的选择性结合。

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