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One-Dimensional Polyaniline Nanotubes for Enhanced Chemical and Biochemical Sensing

机译:一维聚苯胺纳米管,用于增强化学和生化传感

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In this work we explored a simple, cheap and fast route to grow polyaniline (PANI) nanotubes arranged in an ordered structure directly on an electrode surface by electrochemical polymerisation. The deposited nanostructures were electrochemically and morphologically characterised and then used as a functional substrate for biochemical sensing by combining the intrinsic advantages of nanostructures as optimal transducers and the well known benefits of molecu-larly imprinted polymers (MIPs) as receptors. The hybrid nanostructured-MIP sensor was applied to the molecular recognition of catechol. Moreover, a gas sensing application was also investigated by exploiting resistance variation of the polymer in presence of different gases (CO, NO_2, NH_3 and ethanol).
机译:在这项工作中,我们探讨了通过电化学聚合在电极表面上直接在有序结构中布置的多酰胺(PANI)纳米管的简单,便宜和快速的路线。沉积的纳米结构在电化学和形态学中表征,然后用作生物化学感测的功能基质,通过将纳米结构的固有优点与最佳换能器相结合,以及分子般的印迹聚合物(MIPS)作为受体的众所周知的益处。将杂化纳米结构 - MIP传感器应用于儿茶酚的分子识别。此外,还通过在不同气体存在下利用聚合物的电阻变化(CO,NO_2,NH_3和乙醇)来研究气体传感施用。

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