首页> 外文期刊>Analytical and Bioanalytical Chemistry >Graphene oxide nanoribbons (GNO), reduced graphene nanoribbons (GNR), and multi-layers of oxidized graphene functionalized with ionic liquids (GO–IL) for assembly of miniaturized electrochemical devices
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Graphene oxide nanoribbons (GNO), reduced graphene nanoribbons (GNR), and multi-layers of oxidized graphene functionalized with ionic liquids (GO–IL) for assembly of miniaturized electrochemical devices

机译:氧化石墨烯纳米带(GNO),还原石墨烯纳米带(GNR)以及用离子液体(GO-IL)功能化的多层氧化石墨烯,用于组装微型电化学装置

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摘要

In this critical review, new nanomaterials based on graphene (GN) are described, especially those used for the assembly of miniaturized electrochemical transducers. In particular, the physicochemical properties and mechanical features of few layers of graphene (FLGs) are described, as is their use for assembly of chemically modified sensors, biosensors, and immunosensors. The FLGs described here were functionalized by chemical treatment in solution, resulting in oxidized and/or reduced surfaces, edges, and sides. The presence of oxygenated functionality strongly affects the electrocatalysis and the electron-transfer properties of several molecular targets, not only in the solid phase (e.g. in field-effect transistors, FETs) but also in liquid matrices (chemically modified electrodes and biosensors). In addition, “green chemistry” reagents, for example ionic liquids (ILs) can be used for exfoliation and intercalation of graphene planes, to obtain stable and homogeneous nanodispersions. The assembled sensors, biosensors, and immunosensors are extremely useful for electrochemical detection of several electro-active targets of importance in food analysis, environmental monitoring, and clinical diagnosis. A detailed description of each analytical application has been given in this critical review and brief remarks on the emerging disciplines of nanomedicine and nanofoods are also discussed.
机译:在这一重要的综述中,描述了基于石墨烯(GN)的新纳米材料,尤其是用于组装小型电化学换能器的纳米材料。特别是,描述了石墨烯(FLG)的几层的理化性质和机械特性,以及它们在化学修饰传感器,生物传感器和免疫传感器的组装中的用途。本文所述的FLG通过在溶液中进行化学处理进行功能化,导致表面,边缘和侧面氧化和/或还原。氧化官能团的存在不仅在固相中(例如在场效应晶体管,FET中)而且在液体基质(化学修饰的电极和生物传感器)中强烈影响几个分子靶的电催化和电子转移性质。另外,可以使用“绿色化学”试剂,例如离子液体(ILs)来剥离和嵌入石墨烯平面,以获得稳定且均匀的纳米分散体。组装好的传感器,生物传感器和免疫传感器对于电化学检测在食品分析,环境监测和临床诊断中具有重要意义的几个电活性目标非常有用。在这一重要的综述中,已对每种分析应用程序进行了详细说明,并讨论了有关纳米药物和纳米食品新兴学科的简短评论。

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