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Single-, Few-, and Multilayer Graphene Not Exhibiting Significant Advantages over Graphite Microparticles in Electroanalysis

机译:单层,少量和多层石墨烯在电分析中没有比石墨微粒展现出显着优势

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This report compares the electroanalytical performances of single- (G-SL), few- (G-FL), and multilayer graphene (G-ML), graphite microparticles, and edge-plane pyrolytic graphite electrodes in terms of sensitivity, linearity, and repeatability. We show that in the case of differential pulse voltammetric (DPV) detection of ascorbic acid, the sensitivity of a G-SL electrode is about 30percent greater than that of G-ML and about 40percent greater than graphite microparticles. However, in the case of DPV determination of uric acid, sensitivity is practically the same for all (G-SL, G-FL, and G-ML) and, importantly, the graphite microparticles do provide higher sensitivity than graphenes do for this analyte. Graphenes also do not provide a significant advantage in terms of repeatability. We pose the question of whether the efforts leading to the bulk method of producing single-layer graphene are justified for electroanalytical applications.
机译:该报告比较了单(G-SL),极少(G-FL)和多层石墨烯(G-ML),石墨微粒和边缘平面热解石墨电极的电分析性能,包括灵敏度,线性和重复性。我们显示,在抗坏血酸的差分脉冲伏安(DPV)检测的情况下,G-SL电极的灵敏度比G-ML的灵敏度高约30%,比石墨微粒的灵敏度高约40%。但是,在DPV测定尿酸的情况下,灵敏度对于所有(G-SL,G-FL和G-ML)实际上都是相同的,重要的是,石墨微粒确实比石墨烯对这种分析物具有更高的灵敏度。 。就重复性而言,石墨烯也没有提供明显的优势。我们提出一个问题,即导致大量生产单层石墨烯方法的努力是否合理地用于电分析应用。

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