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On-chip electrochemical microsystems for measurements of copper and conductivity in artificial seawater

机译:用于人工海水中铜和电导率测量的片上电化学微系统

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摘要

The fabrication and characterisation of microelectrochemical sensors for Cu~(2+) and conductivity suitable for operation in the marine environment are presented. The impact of the designs on sensor performance and their adequacy to operate in real conditions are discussed. The sensors, tailored to voltammetric and impedimetric measurements, are fabricated on silicon using photolithographic and thin film deposition techniques. The impedimetric sensor is made of Pt interdigitated electrodes which are used for the measurement of conductivity. The voltammetric sensors are based on a three electrode electrochemical cell with on-chip Ag|AgCl reference and Pt counter and working electrodes, used for detection of copper by underpotential deposition-stripping voltammetry at microelectrode array. The sensors operated in the Cu~(2+) concentrations ranging from 0.48 to 3.97 μM with a limit of detection of 0.115 μM. The impact of the temperature, the pH and the salinity of the artificial seawater on the sensitivity for Cu~(2+) detection are also considered. Measurements of copper concentration and conductivity are validated using certified reference materials and standard solutions.
机译:介绍了适用于海洋环境的Cu〜(2+)和电导率微电化学传感器的制备与表征。讨论了设计对传感器性能的影响及其在实际条件下运行的适当性。专门针对伏安和阻抗测量的传感器,是使用光刻和薄膜沉积技术在硅上制造的。阻抗传感器由Pt叉指电极制成,用于测量电导率。伏安传感器基于三电极电化学电池,带有片上Ag | AgCl参比电极和Pt对电极以及工作电极,用于通过微电极阵列上的欠电位沉积-剥离伏安法检测铜。传感器在Cu〜(2+)浓度为0.48至3.97μM的范围内运行,检测极限为0.115μM。还考虑了温度,pH值和人工海水盐度对Cu〜(2+)检测灵敏度的影响。铜浓度和电导率的测量使用认证的参考材料和标准溶液进行验证。

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