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Selective and sensitive TNT sensors using biomimetic polydiacetylene-coated CNT-FETs

机译:使用仿生聚二乙炔涂层的CNT-FET的选择性和敏感TNT传感器

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摘要

Miniaturized smart sensors that can perform sensitive and selective real-time monitoring of target analytes are tremendously valuable for various sensing applications. We developed selective nanocoatings by combining trinitrotoluene (TNT) receptors bound to conjugated polydiacetylene (PDA) polymers with single-walled carbon nanotube field-effect transistors (SWNT-FET). Selective binding events between the TNT molecules and phage display derived TNT receptors were effectively transduced to sensitive SWNT-FET conductance sensors through the PDA coating layers. The resulting sensors exhibited an unprecedented 1 fM sensitivity toward TNT in real time, with excellent selectivity over various similar aromatic compounds. Our biomimetic receptor coating approach may be useful for the development of sensitive and selective micro- and nanoelectronic sensor devices for various other target analytes.
机译:可以对目标分析物进行灵敏和选择性的实时监控的小型智能传感器,对于各种传感应用而言都具有巨大的价值。我们通过结合与共轭聚二乙炔(PDA)聚合物结合的三硝基甲苯(TNT)受体与单壁碳纳米管场效应晶体管(SWNT-FET)来开发选择性纳米涂层。 TNT分子和噬菌体展示衍生的TNT受体之间的选择性结合事件通过PDA涂层有效地转导至敏感的SWNT-FET电导传感器。最终的传感器对TNT实时显示出空前的1 fM灵敏度,对各种相似的芳族化合物具有出色的选择性。我们的仿生受体涂层方法可能对开发用于各种其他目标分析物的灵敏且选择性的微电子和纳米电子传感器设备很有用。

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