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Nanoparticles-Modified Chemical Sensor Fabricated on a Flexible Polymer Substrate for Cadmium(II) Detection

机译:用于镉(II)检测的柔性聚合物基板上制备的纳米粒子修饰的化学传感器

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摘要

This paper presents the development of a chemical sensor which was microfabricated on top of liquid crystal polymer (LCP) substrate. As a result of the unique material properties of LCP, the sensor showed favorable flexibility as well as operational reliability. These features demonstrate potential for integration of the sensor into automated sensing vehicles to achieve real-time detection. The sensor consists of a gold working electrode, a silver/silver chloride reference electrode, and a gold counter electrode. The working electrode of the sensor was further modified with bismuth nanoparticles and Nafion. The modified sensor exhibited a significantly enhanced sensing capability toward cadmium metal ion (Cd(II)) in comparison to the unmodified one. The effects of deposition potential and deposition time on the sensing performance of the sensor were extensively investigated through electrochemical experiments. With optimized parameters, the sensor was capable of quantifying Cd(II) in the concentration range of 0.3 to 25 µg/L. The minimum Cd(II) concentration detected by the sensor was 0.06 µg/L under quiescent deposition. The obtained results suggest that the proposed sensor has a great potential to be deployed for in-situ Cd(II) determination.
机译:本文介绍了一种化学传感器的开发,该传感器微制造在液晶聚合物(LCP)基板的顶部。由于LCP具有独特的材料特性,该传感器显示出良好的柔韧性以及操作可靠性。这些功能展示了将传感器集成到自动感应车辆中以实现实时检测的潜力。该传感器由一个金工作电极,一个银/氯化银参比电极和一个金对电极组成。传感器的工作电极进一步用铋纳米粒子和Nafion改性。与未修改的传感器相比,修改后的传感器对镉金属离子(Cd(II))的传感能力显着增强。通过电化学实验广泛研究了沉积电位和沉积时间对传感器传感性能的影响。借助优化的参数,该传感器能够在0.3至25 µg / L的浓度范围内定量Cd(II)。在静态沉积条件下,传感器检测到的最低Cd(II)浓度为0.06 µg / L。获得的结果表明,提出的传感器具有很大的潜力可用于原位Cd(II)测定。

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