首页> 外文期刊>Electrochimica Acta >Facile electrochemical preparation of NaOH nanorods on glassy carbon electrode for ultrasensitive and simultaneous sensing of hydroquinone, catechol and resorcinol
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Facile electrochemical preparation of NaOH nanorods on glassy carbon electrode for ultrasensitive and simultaneous sensing of hydroquinone, catechol and resorcinol

机译:玻璃碳电极中NaOH纳米棒的容易电化学制剂,用于超细醌,儿茶酚和芳丙酮的超细碳和同时检测

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摘要

A simple and efficient electrochemical sensing platform for simultaneous detection of hydroquinone (HQ), catechol (CC) and resorcinol (RC) based on in-situ prepared sodium hydroxide (NaOH) nanorods was reported for the first time. Sodium hydroxide (NaOH) nanorods on glassy carbon electrode (GCE) was synthesized via one electrochemical deposition step in NaOH solution using constant current. The affecting factors including content of NaOH solution, deposition current and deposition time were investigated. The obtained electrodes were also examined by scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDS), cyclic voltammetry (CV), and electrochemical impedance spectroscopy (EIS). The electrochemical behaviour analysis and dynamic study indicated that the three dihydroxybenzene isomers can be catalytically oxidized and discriminated simultaneously on the proposed electrode. Using square wave voltammetry (SWV), the ultrasensitive and simultaneous detection of HQ, CC and RC was realized with wide linear range from 0.03 to 1500 mu M and low detection limit of 0.01, 0.01, 0.09 mM, respectively. The detection of them in real water samples was also successfully performed and good recovery was obtained. (c) 2019 Elsevier Ltd. All rights reserved.
机译:首次报道了一种简单且有效地检测氢醌(HQ),儿茶酚(CC)和间苯二酚(RC)的简单高效的电化学传感平台,首次报道了制备的氢氧化钠(NaOH)纳米棒(NaOH)纳米棒。使用恒定电流通过NaOH溶液中的一种电化学沉积步骤合成玻璃碳电极(GCE)上的氢氧化钠(NaOH)纳米棒。研究了包括NaOH溶液的含量,沉积电流和沉积时间的影响因素。还通过扫描电子显微镜(SEM),能量分散光谱(EDS),循环伏安法(CV)和电化学阻抗光谱(EIS)检查所获得的电极。电化学行为分析和动态研究表明,三种二羟基苯异构体可以在所提出的电极上同时催化氧化和区别。使用方波伏安法(SWV),通过宽线性范围从0.03至1500μm和0.01,0.01,0.09mm的低线性范围实现超细管和同时检测。还成功地进行了实际水样中的检测,得到了良好的回收率。 (c)2019 Elsevier Ltd.保留所有权利。

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