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A novel label-free hypochlorite amperometric sensor based on target-induced oxidation of benzeneboronic acid pinacol ester

机译:基于靶诱导的苯硼酸皮卡酚酯的氧化氧化的一种新型无标记次氯酸倍数传感器

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摘要

In this work, a novel label-free hypochlorite amperometric sensor based on the direct oxidation of benzeneboronic acid pinacol ester (BAPE) induced by hypochlorite was developed. 4-Aminophenylboronic acid pinacol ester (ABAPE) chemically bonded to functionalized multi-walled carbon nanotubes (f-MWCNTs) was employed to recognize the hypochlorite species. In nearly neutral solutions, the ABAPE probe was able to provide a distinct oxidation signal at approximately 0.65 V vs. Ag/AgCl. When hypochlorite was added, it reacted with ABAPE rapidly to form a stable hydroxyl derivative, resulting in a significant decrease of the current at 0.65 V. Therefore, the hypochlorite target could be detected by recording the reduced oxidation signal of ABAPE. Under optimized conditions, the fabricated sensor offered linear amperometric responses for the target in the concentration ranges of 0.01-0.1 mM and 0.1-1 mM, providing a limit of detection down to 5.3 mu M based on S/N = 3. The presence of common anions, including carbonate, sulfate, nitrate, and halide ions, had no obvious effects on the selective determination of hypochlorite. The amperometric sensor also exhibited excellent accuracy and precision in monitoring the hypochlorite level in tap water. These results suggest that the new sensor has great promise for use in various fields such as water pollution control, environmental monitoring, and food safety.
机译:在这项工作中,开发了一种基于次氯酸盐诱导的苯并硼酸皮醇酯(BAPE)直接氧化的新型无标记次氯酸盐倍数传感器。将4-氨基苯基硼酸皮卡糖酯(ABAPE)化学键合与官能化的多壁碳纳米管(F-MWCNT)识别次氯酸盐物质。在几乎中性的溶液中,ABAPE探针能够在约0.65V与Ag / AgCl提供明显的氧化信号。当加入次氯酸盐时,它迅速反应,以形成稳定的羟基衍生物,导致电流在0.65V下显着降低。因此,通过记录ABAPE的降低的氧化信号,可以检测次氯酸盐靶。在优化条件下,制造的传感器在0.01-0.1mm和0.1-1mm的浓度范围内为目标提供线性排水响应,基于S / N = 3提供检测的限制至5.3μm= 3.常见阴离子,包括碳酸盐,硫酸盐,硝酸盐和卤化物离子,对次氯酸盐的选择性测定没有明显的影响。安培测量传感器在监测自来水中的次氯酸盐水平时也表现出优异的准确性和精度。这些结果表明,新传感器在水污染控制,环境监测和食品安全等各种领域中使用了很大的承诺。

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