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Aligned/Micropatterned Carbon Nanotube Arrays: Surface Functionalization and Electrochemical Sensing

机译:对齐/微图案化碳纳米管阵列:表面功能化和电化学传感。

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We have previously developed a simple pyrolytic method for large-scale production of aligned multi-wall carbon nanotube arrays perpendicular to the substrate. These aligned carbon nanotube arrays can be transferred onto various substrates of particular interest (e.g. polymer films for organic optoelectronic devices) in either a patterned or non-patterned fashion. The well-aligned structure provides additional advantages for not only an efficient device construction but also for surface functionalization. The surface functionalization of aligned carbon nanotubes is particularly attractive, as it allows surface characteristics of the aligned carbon nanotubes to be tuned to meet specific requirements for particular applications while their alignment structure can be largely retained. These aligned carbon nanotubes with tunable surface characteristics are of great significance to various practical applications ranging from sensors to electronics. Single-strand DNA chains could be covalently immobilized onto plasma-activated aligned carbon nanotubes for sensing complementary DNA and/or target DNA chains of specific swquences with a high sensitivity and selectivity. Furthermore, glucose oxidase (GOX) could also be immobilized onto the aligned carbon nanoutbe arrays by electropolymerization of pyrrole in the presence of GOX. The resultant GOX-containing polypyrrole-carbon nanotube coaxial nanowires were shown to be promising new sensing active materials for making advanced glucose sensors with a high sensitivity.
机译:我们先前已经开发出一种简单的热解方法,用于大规模生产垂直于基材的取向多壁碳纳米管阵列。这些对准的碳纳米管阵列可以以图案化或非图案化的方式转移到各种特别令人关注的基板上(例如,用于有机光电器件的聚合物膜)。对准良好的结构不仅为有效的器件结构提供了其他优势,而且为表面功能化提供了其他优势。对齐的碳纳米管的表面功能化特别吸引人,因为它可以调整对齐的碳纳米管的表面特性,以满足特定应用的特定要求,同时可以很大程度上保留其对齐结构。这些具有可调表面特性的取向碳纳米管对从传感器到电子设备的各种实际应用都具有重要意义。可以将单链DNA链共价固定在等离子活化的对齐碳纳米管上,以高灵敏度和选择性检测特定频率的互补DNA和/或靶DNA链。此外,还可以通过在GOX存在下通过吡咯进行电聚合将葡萄糖氧化酶(GOX)固定在对齐的纳米碳管阵列上。结果表明,所得的含GOX的聚吡咯-碳纳米管同轴纳米线是有前途的新型传感活性材料,可用于制造具有高灵敏度的先进葡萄糖传感器。

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