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PCB Technology-Based Electrochemiluminescence Microfluidic Device for Low-Cost Portable Analytical Systems

机译:基于PCB技术的低成本便携式分析系统电化学发光微流体装置

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摘要

This paper presents the design of two configurations of electrodes (“gold versus Ag/AgCl” and “gold versus gold”) and an electrochemiluminescence (ECL) microfluidic device fabricated in the inexpensive printed circuit board (PCB) technology. The PCB electrodes are electrochemically characterized to determine appropriate working potentials. The ECL microfluidic device with integrated PCB electrodes is tested using luminol as luminophore to quantify ${rm H}_{2}{rm O}_{2}$ concentrations. Synchronous detection technique is implemented for weak signal recovery. For both PCB electrode configurations, a 100 nM ${rm H}_{2}{rm O}_{2}$ concentration is detected and a linear range extending from 100 nM to 10 mM is observed with a photomultiplier tube. A lab-on-board compatible potentiostat and a compact CMOS photodetector module are also designed and validated. The proposed instrumental approach may represent a low-cost way to develop portable analytical systems.
机译:本文介绍了两种结构的电极(“金对Ag / AgCl”和“金对金”)和采用廉价印刷电路板(PCB)技术制造的电致发光(ECL)微流体装置的设计。对PCB电极进行电化学表征,以确定合适的工作电位。使用鲁米诺作为发光体测试了具有集成PCB电极的ECL微流体设备,以量化$ {rm H} _ {2} {rm O} _ {2} $的浓度。实施同步检测技术以实现微弱的信号恢复。对于这两种PCB电极配置,均检测到100 nM $ {rm H} _ {2} {rm O} _ {2} $的浓度,并用光电倍增管观察到从100 nM到10 mM的线性范围。还设计并验证了实验室兼容的稳压器和紧凑的CMOS光电探测器模块。所提出的仪器方法可能代表开发便携式分析系统的低成本方法。

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