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首页> 外文期刊>Journal of Electronic Materials >Nanostructured Cuprous-Oxide-Based Screen-Printed Electrode for Electrochemical Sensing of Picric Acid
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Nanostructured Cuprous-Oxide-Based Screen-Printed Electrode for Electrochemical Sensing of Picric Acid

机译:纳米结构基于氧化铜的丝网印刷电极,用于麦克酸电化学传感

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摘要

The sensitive and selective electrochemical detection of picric acid (PA), a toxic, harmful environmental pollutant and an explosive, using different morphologies of cuprous oxide (Cu2O) is reported. The different Cu2O morphologies, synthesized by a hydrothermal method for 8h, 10h, and 12h, were characterized using various techniques to confirm their morphological, optical, compositional, and structural properties. Sensors, fabricated in the form of screen-printed electrodes using these different morphologies of Cu2O, were used to study the electrochemical sensing capabilities of the nanomaterials for PA (7.8 mu M to 10.0 mM). Cyclic voltammetry studies revealed a distinct change in the redox peak current as a function of PA concentration, which was further confirmed by electrochemical impedance spectroscopy studies, as the charge-transfer resistance increased with an increase in PA concentration. Scan rate studies showed that the electrochemical sensing of PA is a surface-controlled process, involving rapid electron transfer. Among the different morphologies, Cu2O synthesized for 8h showed a reproducible and reliable sensitivity of 130.4 mu A mM(-1)cm(-2) with a limit of detection of 39 mu M and good linearity over a wide range of PA concentrations. Interference studies with other phenolic compounds revealed the presence of distinct peaks corresponding to PA, indicating that the fabricated sensor shows specificity and selectivity for PA.
机译:据报道,使用不同形态的吡啶酸(PA),有毒,有害环境污染物和爆炸性的敏感和选择性电化学检测据报道使用不同的氧化亚铜(CU2O)。通过水热法合成8小时,10h和12h的不同的Cu2O形态,以各种技术表征以确认它们的形态,光学,组成和结构性能。使用这些不同形态的Cu 2 O的丝网印刷电极形式制造的传感器用于研究PA的纳米材料的电化学感测能力(7.8μm至10.0mm)。循环伏安法研究表明,作为PA浓度的函数的氧化还原峰值电流的明显变化,通过电化学阻抗光谱研究进一步证实,因为电荷转移阻力随PA浓度的增加而增加。扫描速率研究表明,PA的电化学传感是一种表面控制的过程,涉及快速电子转移。在不同的形态中,合成8h的Cu 2O显示可再现且可靠的敏感性为130.4μmMm(-1)cm(-2),其检测为39μm和良好的PA浓度上的良好线性。与其他酚类化合物的干扰研究显示出对应于PA的不同峰的存在,表明制造的传感器显示了PA的特异性和选择性。

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