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Facile green synthesis of reduced graphene oxide/tin oxide composite for highly selective and ultra-sensitive detection of ascorbic acid

机译:抗坏血酸的高选择性和超敏检测,容易绿色合成氧化石墨烯氧化物/氧化锡复合材料

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摘要

In this work, we report a novel, cost effective and environmental-friendly green synthesis method of reduced graphene oxide (rGO) - tin oxide (SnO2) composite using lemon extract by hydrothermal process for selective and ultra-sensitive electrochemical detection of ascorbic acid. The electrochemical behavior of ascorbic acid at the surface of rGO-SnO2 composite modified glassy carbon electrode (GCE) was investigated by cyclic voltammetry (CV) technique whilst ascorbic acid sensing was performed by using differential pulse voltammetry (DPV) technique. An excellent sensitivity of 1200 mu A mM(-1) cm(-2) (R-2 = 0.990) towards ascorbic acid in the wide dynamic range of 400 pM-1600 mu M without any surface fouling effect was observed which is, to the best of our knowledge,similar to 1.6 folds higher than previously reported ascorbic acid sensors. The as-fabricated sensor exhibited lower limit of detection (38.7 mu M), superior reproducibility and selectivity towards interfering species such as glucose, urea, uric acid and Na+ ions. This enhanced sensing ability was studied and discussed in terms of forward biased nano-Schottky barriers at the rGO-SnO2 interface. The sensor was successfully evaluated for the detection of ascorbic acid in the vitamin C tablets and to predict unknown concentrations of ascorbic acid in PBS solution. This ultrasensitive, binder free rGO-SnO2 composite based sensor can be used for a simple, low cost and voltammetric detection of ascorbic acid in clinical diagnostics, pharmaceutical and food industries.
机译:在这项工作中,我们通过水热方法报告了一种新颖的,成本效益和环保的绿色合成方法,使用柠檬提取物用于选择性和超敏感的抗坏血酸的超敏感电化学检测。通过使用微分脉冲伏安法(DPV)技术进行循环伏安法(CV)技术研究了抗坏血酸在RGO-SnO2复合改性玻璃电极(GCE)表面的电化学行为。观察到在400pm-1600 mu m的宽动态范围内为抗坏血酸的1200μmmm(-1)cm(-2 = 0.990)的优异敏感性在没有任何表面污垢效果的情况下,这是我们所知的最佳,与先前报告的抗坏血酸传感器高1.6倍。制造的传感器表现出较低的检测限(38.7μm),优异的再现性和对干扰物种如葡萄糖,尿素,尿酸和Na +离子的选择性。在RGO-SnO2界面处研究并讨论了这种增强的感测能力,并讨论了正向偏置纳米肖特基屏障。成功评价传感器以检测维生素C片中的抗坏血酸,并预测PBS溶液中的未知浓度抗坏血酸。这种超敏的粘合剂免费RGO-SnO2复合的传感器可用于临床诊断,制药和食品工业中的抗坏血酸的简单,低成本和伏安检测。

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