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Hybrid Nanocomposite Platform Based on Carbon Nanotubes and Poly(Methylene Blue) Redox Polymer Synthesized in Ethaline Deep Eutectic Solvent for Electrochemical Determination of 5-Aminosalicylic Acid

机译:杂交纳米复合平台基于碳纳米管和聚(亚甲基蓝色)氧化还原聚合物在乙氨氨酸深的溶剂中合成用于电化学测定5-氨基水杨酸

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摘要

A novel hybrid composite of conductive poly(methylene blue) (PMB) and carbon nanotubes (CNT) was prepared for the detection of 5-aminosalicylic acid (5-ASA). Electrosynthesis of PMB with glassy carbon electrode (GCE) or with carbon nanotube modified GCE was done in ethaline deep eutectic solvent of choline chloride mixed with ethylene glycol and a 10% v/v aqueous solution. Different sensor architectures were evaluated in a broad range of pH values in a Britton-Robinson (BR) buffer using electrochemical techniques, chronoamperometry (CA), and differential pulse voltammetry (DPV), to determine the optimum sensor configuration for 5-ASA sensing. Under optimal conditions, the best analytical performance was obtained with CNT/PMBDES/GCE in 0.04 M BR buffer pH 7.0 in the range 5–100 µM 5-ASA using the DPV method, with an excellent sensitivity of 9.84 μA cm−2 μM−1 (4.9 % RSD, n = 5) and a detection limit (LOD) (3σ/slope) of 7.7 nM, outclassing most similar sensors found in the literature. The sensitivity of the same sensor obtained in CA (1.33 μA cm−2 μM−1) under optimal conditions (pH 7.0, Eapp = +0.40 V) was lower than that obtained by DPV. Simultaneous detection of 5-ASA and its analogue, acetaminophen (APAP), was successfully realized, showing a catalytic effect towards the electro-oxidation of both analytes, lowering their oxidation overpotential, and enhancing the oxidation peak currents and peak-to-peak separation as compared with the unmodified electrode. The proposed method is simple, sensitive, easy to apply, and economical for routine analysis.
机译:制备了一种新的导电聚(亚甲基蓝色)(PMB)和碳纳米管(CNT)的新型杂化复合物用于检测5-氨基水杨酸(5-ASA)。用玻璃碳电极(GCE)或用碳纳米管改性GCE的PMB的电合成在与乙二醇和10%v / v水溶液混合的胆碱氯化胆碱的深层共晶溶剂中。使用电化学技术,计时率(CA)和差分脉冲伏安(DPV)在Britton-Robinson(BR)缓冲器中,在Britton-Robinson(BR)缓冲器中的各种pH值中评估不同的传感器架构,以确定5-ASA感测的最佳传感器配置。在最佳条件下,使用DPV方法的0.04MBR缓冲液pH 7.0中的CNT / PMBDES / GCE获得最佳分析性能,具有优异的9.84μAcm-2μm-的敏感性。 1(4.9%RSD,N = 5)和7.7nm的检测限(LOD)(3σ/斜率),出差在文献中发现的大多数相似的传感器。在最佳条件下(1.33μAcm-2μm-1)(pH7.0,eApp = + 0.40V)在Ca(1.33μAcm-2μm-1)中获得的相同传感器低于通过DPV获得的相同传感器。同时检测5-ASA及其类似物,乙酰氨基酚(APAP),显示出朝向两种分析物的电氧化的催化作用,降低其氧化过度,并增强氧化峰电流和峰 - 峰值分离与未改性电极相比。该方法简单,敏感,易于施用,常规分析经济。

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