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Hybrid-power wireless electrochemical platform coupled to screen-printed electrode module for natural water monitoring

机译:混合动力无线电化学平台与丝网印刷电极模块耦合,用于天然水监测

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The aim of this paper is to present a practical hybrid-power method for wireless chemical sensor of radio-frequency identification. Radio-frequency carrier is divided into dual-direction signal chain and single-direction power chain where 3-W wireless power transfer with ∼71% efficiency is possible. This feature is further enhanced by introducing a power management unit (PMU) coupled to a super capacitor. The hybrid of wireless power transfer and self-powered PMU provides a high-power window and a low-EMI window as long as 120 s. They contribute to powerful operations and high-performance measurements. A wireless electrochemical platform and a screen-printed electrode module are prepared to validate the proposed method. The electrode module is modified with multiple materials for pH sensing and stripping determinations of Cd(II) and Pb(II). The proposed method is evaluated by different means as scanning electron microscope, electrical measurement, cyclic voltammetry and stripping technique. Furthermore, it is used for natural water monitoring, and shows good stabilities and satisfying analytical properties in a 7-day period.
机译:本文的目的是提出一种实用的混合功率方法,用于无线化学射频识别传感器。射频载波分为双向信号链和单向功率链,其中3W功率传输效率约为71%。通过引入耦合到超级电容器的电源管理单元(PMU),可以进一步增强此功能。无线功率传输和自供电PMU的混合提供了长达120 s的高功率窗口和低EMI窗口。它们有助于强大的操作和高性能的测量。准备一个无线电化学平台和一个丝网印刷的电极模块来验证该方法。电极模块用多种材料改性,可用于pH传感和Cd(II)和Pb(II)的溶出测定。通过扫描电子显微镜,电学测量,循环伏安法和剥离技术等多种手段对所提出的方法进行了评价。此外,它还用于天然水监测,并在7天的时间内显示出良好的稳定性和令人满意的分析性能。

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