首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >A study on the electro-reductive cycle of amino-functionalized graphene quantum dots immobilized on graphene oxide for amperometric determination of oxalic acid
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A study on the electro-reductive cycle of amino-functionalized graphene quantum dots immobilized on graphene oxide for amperometric determination of oxalic acid

机译:氨基官能化石墨烯量子点固定在石墨烯氧化物中的氨基官能化石墨烯片的研究研究

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摘要

Amino-functionalized graphene quantum dots (NH2-GQD) are described for the amperometric determination of oxalic acid. The NH2-GQD were synthesized via a hydrothermal method using hexamethylenetetramine as the source for nitrogen. The average particle size of the GQD is similar to 30 nm, which is also supported by TEM. Electrochemical analysis of the NH2-GQD-GO composite on a glassy carbon electrode at pH 7.4 showed a faint reduction peak at -0.6 V vs. SCE, which was enhanced in the presence of oxalic acid. This variation in cathodic current density is an interesting deviation from the usually studied anodic current density for the electrochemical sensors. This is also supported by cyclic voltammetry and time-based amperometric measurements. The electrode has a linear response in the 0.5-2.0 mM and 2.0-55 mM oxalate concentration ranges and a 50 mu M detection limit (at S/N = 3). The electrode was successfully applied to the determination of oxalate in spiked urine samples.
机译:描述了氨基官能化的石墨烯量子点(NH 2 -GQD)用于约集的草酸测定。 通过使用六亚甲基四胺作为氮气的源的水热法合成NH 2 -GQD。 GQD的平均粒径类似于30nm,其也由TEM支撑。 在pH 7.4的玻杯碳电极上的NH 2-GQD-GO复合物的电化学分析显示在-0.6V与SCE下的微弱还原峰,在草酸存在下增强。 阴极电流密度的这种变化是与通常研究的电化学传感器的阳极电流密度的有趣偏差。 这也通过循环伏安法和基于时间的安培测量来支持。 电极在0.5-2.0mm和2.0-55mm的草酸盐浓度范围内具有线性响应和50μm检测极限(在s / n = 3处)。 将电极成功地应用于掺入尿液样品中的草酸盐。

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