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A novel multicomponent redox polymer nanobead based high performance non-enzymatic glucose sensor

机译:基于新型多组分氧化还原聚合物纳米珠的高性能非酶葡萄糖传感器

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摘要

The fabrication of a highly sensitive electrochemical non-enzymatic glucose sensor based on copper nanoparticles (Cu NPs) dispersed in a graphene (G)-ferrocene (Fc) redox polymer multicomponent nanobead (MCNB) is reported. The preparation of MCNB involves three major steps, namely: i) the preparation of a poly(aniline-co-anthranilic acid)-grafted graphene (G-PANI(COOH), ii) the covalent linking of ferrocene to G-PANI(COOH) via a polyethylene imine (PEI), and iii) the electrodeposition of Cu NPs. The prepared MCNB (designated as G-PANI(COOH)-PEI-Fc/Cu-MCNB), contains a conductive G-PANI(COOH), electron mediating Fc, and electrocatalytic Cu NPs that make it suitable for ultrasensitive non-enzymatic electrochemical sensing. The morphology, structure, and electro activities of MCNB were characterized. Electrochemical measurements showed that the G-PANI(COOH)-PEI-Fc/Cu-MCNB/GCE modified electrode exhibited good electrocatalytic behavior towards the detection of glucose in a wide linear range (0.50 to 15 mM), with a low detection limit (0.16 mM) and high sensitivity (14.3 mu A mM(-1) cm(-2)). Besides, the G-PANI(COOH)-PEI-Fc/Cu-MCNB/GCE sensor electrode did not respond to the presence of electroactive interferrants (such as uric acid, ascorbic acid, and dopamine) and saccharides or carbohydrates (fructose, lactose, D-isoascorbic acid, and dextrin), demonstrating its selectivity towards glucose. The fabricated NEG sensor exhibited high precision for measuring glucose in serum samples, with an average RSD of 4.3% and results comparable to those of commercial glucose test strips. This reliability and stability of glucose sensing indicates that G-PANI(COOH)-PEI-Fc/Cu-MCNB/GCE would be a promising material for the non-enzymatic detection of glucose in physiological fluids. (C) 2015 Elsevier B.V. All rights reserved.
机译:报告了基于分散在石墨烯(G)-二茂铁(Fc)氧化还原聚合物多组分纳米珠(MCNB)中的铜纳米颗粒(Cu NPs)的高灵敏度电化学非酶葡萄糖传感器的制造。 MCNB的制备涉及三个主要步骤,即:i)制备聚(苯胺-共-邻氨基苯甲酸)接枝的石墨烯(G-PANI(COOH),ii)二茂铁与G-PANI(COOH)的共价连接)通过聚乙烯亚胺(PEI),和iii)电沉积铜纳米颗粒。制备的MCNB(指定为G-PANI(COOH)-PEI-Fc / Cu-MCNB)包含导电性G-PANI(COOH),电子介导Fc和电催化铜NP,使其适用于超灵敏非酶电化学感应。表征了MCNB的形态,结构和电活性。电化学测量表明,G-PANI(COOH)-PEI-Fc / Cu-MCNB / GCE修饰电极在宽线性范围(0.50至15 mM)中对葡萄糖的检测表现出良好的电催化行为,且检测限低( 0.16 mM)和高灵敏度(14.3μA mM(-1)cm(-2))。此外,G-PANI(COOH)-PEI-Fc / Cu-MCNB / GCE传感器电极对电活性干扰物(如尿酸,抗坏血酸和多巴胺)和糖类或碳水化合物(果糖,乳糖)的存在没有反应,D-异抗坏血酸和糊精),证明了其对葡萄糖的选择性。制成的NEG传感器对血清样品中的葡萄糖测量具有很高的精确度,平均RSD为4.3%,其结果可与商用葡萄糖试纸相媲美。葡萄糖感测的这种可靠性和稳定性表明,G-PANI(COOH)-PEI-Fc / Cu-MCNB / GCE将是一种用于非酶法检测生理液中葡萄糖的有希望的材料。 (C)2015 Elsevier B.V.保留所有权利。

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