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Polypyrrole Nanotube Embedded Reduced Graphene Oxide Transducer for Field-Effect Transistor-Type H_2O_2 Biosensor

机译:用于场效应晶体管型H_2O_2生物传感器的聚吡咯纳米管嵌入式还原氧化石墨烯传感器

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摘要

We report a rapid-response and high-sensitivity sensor with specificity toward H_2O_2 based on a liquid-ion-gated field-effect transistor (FET) using graphene-polypyrrole (PPy) nanotube (NT) composites as the conductive channel. The rGO, PPy, NTs, and nanocomposite materials were characterized using Raman spectroscopy, Fourier transform-infrared (FT-IR) spectroscopy, transmission electron microscopy (TEM), and scanning electron microscopy (SEM). On the basis of these results, a well-organized structure is successfully prepared owing to the specific interactions between the PPy NTs and the rGO sheet. Reliable electrical contacts were developed between the rGO/PPy NTs and the microelectrodes, which remained stable when exposed to the liquid-phase analyte. Liquid-ion-gated FETs composed of these graphene nanocomposites exhibited hole-transport behavior with conductivities higher than those of rGO sheets or PPy NTs. This implies an interaction between the PPy NTs and the rGO layers, which is explained in terms of the PPy NTs forming a bridge between the rGO layers. The FET sensor provided a rapid response in real time and high sensitivity toward H_2O_2 with a limit of detection of 100 pM. The FET-type biosensing geometry was also highly reproducible and stable in air. Furthermore, the liquid-gated FET-type sensor exhibited specificity toward H_2O_2 in a mixed solution containing compounds found in biological fluids.
机译:我们报告了一种快速响应和高灵敏度的传感器,其基于使用石墨烯-聚吡咯(PPy)纳米管(NT)复合材料作为导电通道的液离子门控场效应晶体管(FET),对H_2O_2具有特异性。使用拉曼光谱,傅立叶变换红外(FT-IR)光谱,透射电子显微镜(TEM)和扫描电子显微镜(SEM)对rGO,PPy,NTs和纳米复合材料进行了表征。根据这些结果,由于PPy NT和rGO板之间的特定相互作用,成功地准备了组织良好的结构。在rGO / PPy NTs和微电极之间建立了可靠的电接触,当暴露于液相分析物时,微接触保持稳定。由这些石墨烯纳米复合材料组成的液离子门控FET的空穴传输行为具有比rGO片或PPy NTs更高的电导率。这意味着PPy NT和rGO层之间的相互作用,这是通过在rGO层之间形成桥接的PPy NT来解释的。 FET传感器提供了快速的实时响应和对H_2O_2的高灵敏度,检测极限为100 pM。 FET型生物传感几何形状在空气中也具有很高的重现性和稳定性。此外,在含有生物流体中发现的化合物的混合溶液中,液体门控FET型传感器对H_2O_2表现出特异性。

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