首页> 外文期刊>Journal of environmental science and health >Nylon 6,6 modified screen printed carbon electrodes as electrochemical sensors for rapid chlorothalonil determination in water samples using differential pulse cathodic stripping voltammetry
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Nylon 6,6 modified screen printed carbon electrodes as electrochemical sensors for rapid chlorothalonil determination in water samples using differential pulse cathodic stripping voltammetry

机译:尼龙6,6修饰的丝网印刷碳电极作为电化学传感器,使用差分脉冲阴极溶出伏安法快速测定水中的百菌清

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摘要

A newly developed electrochemical sensor for chlorothalonil based on nylon 6,6 film deposited onto screen printed electrode (SPE) with electrochemical modulation of pH at the electrode/solution interface was studied for the first time. Differential pulse cathodic stripping voltammetry (DPCSV) was used to carry out the electrochemical and analytical studies. Experimental parameters such as accumulation potential, initial potential, accumulation time and pH of Britton-Robinson buffer have been optimized. Chlorothalonil gave optimum analytical signal in a medium of 0.04 M Britton-Robinson buffer at pH 6.0. A well-defined reduction peak was observed, at E-p= -0.851 and -0.938 V vs. Ag/AgCl (3.0 M KCl) for both bare SPE and modified SPE, respectively. The peak currents of modified SPE were significantly increased as compared to bare SPE. At the modified SPE, a linear relationship between the peak current and chlorothalonil concentration was obtained in the range from 0.1 to 2.8 x 10(-6) M with a detection limit of 1.53 x 10(-8) M (S/N= 3). The practical applicability of the newly developed method has been demonstrated on analyses of real water samples. The newly developed sensor shows good reproducibility with RSD of 3.92%. The nylon 6,6 modified SPE showed itself as promising sensor with good selectivity for chlorothalonil determination.
机译:首次研究了一种新开发的百菌清电化学传感器,该传感器基于沉积在丝网印刷电极(SPE)上的尼龙6,6膜,并在电极/溶液界面处进行了pH的电化学调节。差分脉冲阴极溶出伏安法(DPCSV)用于进行电化学和分析研究。优化了Britton-Robinson缓冲液的实验参数,如累积电势,初始电势,累积时间和pH。在pH 6.0的0.04 M Britton-Robinson缓冲液的介质中,氯噻酮产生了最佳的分析信号。对于裸露的SPE和改性的SPE,分别在相对于Ag / AgCl(3.0 M KCl)的E-p = -0.851和-0.938 V处观察到明确定义的还原峰。与裸露SPE相比,改性SPE的峰值电流显着增加。在改进的SPE上,峰值电流与百菌清浓度之间的线性关系在0.1至2.8 x 10(-6)M的范围内,检测极限为1.53 x 10(-8)M(S / N = 3 )。新开发方法的实际适用性已在实际水样分析中得到证明。新开发的传感器显示出良好的重现性,RSD为3.92%。尼龙6,6改性的SPE显示出自己是很有希望的传感器,对百菌清的测定具有良好的选择性。

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