计时安培法
微加工
化学
电化学气体传感器
化学需氧量
钻石
检出限
分析化学(期刊)
电极
电化学
微电子机械系统
纳米技术
循环伏安法
色谱法
材料科学
制作
环境工程
有机化学
物理化学
废水
工程类
医学
替代医学
病理
作者
Jian Lin,Jiawen Yin,Wanlei Gao,Qinghui Jin
标识
DOI:10.1080/00032719.2023.2168686
摘要
Chemical oxygen demand (COD) is an important indicator of the degree of organic pollution in water. However, the development of integrated and batch COD electrochemical sensors has always been challenging. In this study, a three-electrode integrated electrochemical sensor for the measurement of COD in surface water was evaluated. Using microfabrication with a microelectromechanical system (MEMS), the sensor was mass-produced and integrated with boron-doped diamond (BDD), Pt, and Ag/AgCl electrodes on the chip. The determination of glucose in optimal conditions provided a linear range from 5 to 200 mg L−1, a detection limit of 3.899 mg L−1, and satisfactory linearity (R2) of 0.998. As the sensor was fabricated by MEMS technology, good reproducibility was experimentally verified with relative standard deviations less than 4%, which suggests mass production of the sensor. The sensor was calibrated to be relatively stable in the presence of Cl− and NO2−. A low-cost, miniature (6 mm2), and stable COD sensor was designed using microfabrication technology that may be mass-produced to build a water quality detection network in the Internet of Things era.
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