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CdS nanotubes thin film for electrochemiluminescence analysis of phenolic compounds

机译:CdS纳米管薄膜用于酚类化合物的化学发光分析

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A CdS nanotubes (NT) thin film has been fabricated to determine phenolic compounds based on the electrochemiluminescence (ECL) quenching of the CdS NT. The CdS NT thin film coated on an indium tin oxide substrate exhibits strong ECL emission with potassium persulfate (K2S2O8) as a coreactant. The effects of pH, electrolyte concentration and cyclic voltammetric scan rate on the ECL were studied. The quenching efficiency is governed by the position of the hydroxyl moiety in the parent benzene ring which follows the trend: resorcinol (1,3-benzenediol) catechol (1,2-benzenediol) hydroquinone (1,4-benzenediol) ≈ phenol. Under the optimal experimental conditions of 0.010 M K2S2O8, pH 11.60 and 0.10 V s?1, the quenching of ECL by catechol (2.0–10.0 μM), hydroquinone (40.0–140 μM), phenol (10–60 μM) and resorcinol (2.0–12.0 μM) follows Stern–Volmer behaviour. The limits of detection are calculated as 0.058, 0.64, 1.7, and 0.069 μM (S/N = 3) for catechol, hydroquinone, phenol, and resorcinol respectively. The fabrication of the CdS NT film is reproducible and its shelf-life is longer than three months. The CdS NT film has been successfully applied to determine the phenol contents in various environmental water samples with satisfactory results and good recoveries. Our proposed ECL CdS NT film provides a simple and convenient method for the detection of phenolic compounds and shows potential use in the pharmaceutical industry and environmental monitoring...
机译:已经制作了CdS纳米管(NT)薄膜,用于基于CdS NT的电化学发光(ECL)猝灭来确定酚类化合物。以过硫酸钾(K2S2O8)为共反应剂,涂在氧化铟锡衬底上的CdS NT薄膜表现出很强的ECL发射。研究了pH,电解质浓度和循环伏安扫描速率对ECL的影响。淬灭效率取决于母苯环中羟基部分的位置,该位置遵循以下趋势:间苯二酚(1,3-苯二醇)>邻苯二酚(1,2-苯二醇)>对苯二酚(1,4-苯二醇)≈苯酚。在0.010 M K2S2O8,pH 11.60和0.10 V s?1的最佳实验条件下,儿茶酚(2.0–10.0μM),对苯二酚(40.0–140μM),苯酚(10–60μM)和间苯二酚( 2.0–12.0μM)遵循Stern–Volmer行为。儿茶酚,对苯二酚,苯酚和间苯二酚的检出限分别计算为0.058、0.64、1.7和0.069μM(S / N = 3)。 CdS NT薄膜的制造具有可复制性,其保质期超过三个月。 CdS NT膜已成功用于测定各种环境水样品中的苯酚含量,结果令人满意,回收率良好。我们建议的ECL CdS NT膜为检测酚类化合物提供了一种简便的方法,并显示了在制药工业和环境监测中的潜在用途。

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