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首页> 外文期刊>Analytical chemistry >Portable Lock-in Amplifier-Based Electrochemical Method to Measure an Array of 64 Sensors for Point-of-Care Applications
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Portable Lock-in Amplifier-Based Electrochemical Method to Measure an Array of 64 Sensors for Point-of-Care Applications

机译:便携式锁定放大器的电化学方法测量64个传感器的阵列,用于护理点应用

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摘要

We present a portable lock-in amplifier-based electrochemical sensing system. The basic unit (cluster) consists of four electrochemical cells (EC), each containing one pseudoreference electrode (PRE) and one working electrode (WE). All four ECs are simultaneously interrogated, each at different frequencies, with square wave pulses superposed on a sawtooth signal for cyclic voltammetry (CV). Lock-in amplification provides independent read-out of four signals, with excellent noise suppression. We expanded a single cluster system into an array of 16 clusters by using electronic switches. The chip with an array of ECs was fabricated using planar technology with a gap between a WE and a PRE of pm, which results in partial microelectrode-type behavior. The basic electrode characterization was performed with the model case using a ferricyanide ferrocyanide redox couple (Fe2+/Fe3+) reaction, performing CV and differential pulse voltammetry (DPV). We then used this system to perform cyclic lock-in voltammetry (CLV) to measure concurrently responses of the four ECs. We repeated this method with all 64 ECs on the chip. The standard deviation of a peak oxidation and reduction current in a single channel consisting of 13 ECs was approximate to 7.46% and approximate to 5.6%, respectively. The four-EC configuration in each measured spot allows determination of nonperforming ECs and, thus, to eliminate potential false results. This system is built in a portable palm-size format suitable for point-of-care applications. It can perform either individual or multiple measurements of active compounds, such as biomarkers.
机译:我们介绍了一种便携式锁定放大器的电化学传感系统。基本单元(群集)由四个电化学电池(EC)组成,每个电化学电池(EC)包括一个假测电极(Pre)和一个工作电极(我们)。所有四个EC同时询问,每个EC在不同的频率下,方波脉冲叠置在循环伏安法(CV)的锯齿信号上。锁定放大提供了独立的四个信号读数,具有出色的噪声抑制。我们通过使用电子开关将单个集群系统扩展为16个集群的数组。使用平面技术制造具有EC阵列的芯片,PM与PM前的间隙之间的间隙,这导致部分微电极型行为。使用铁氰化物铁偶氰化物氧化还原(Fe2 + / Fe3 +)反应,进行CV和差分脉冲伏安法(DPV),用模型壳体进行基本电极表征。然后,我们使用该系统执行循环锁定伏安法(CLV)以测量四个EC的同时响应。我们在芯片上重复了所有64个ECS的方法。由13个ECS组成的单个通道中的峰氧化和降低电流的标准偏差近似为7.46%,分别近似为5.6%。每个测量点中的四个EC配置允许确定不完整的ECS,从而消除潜在的假结果。该系统采用适用于护理点应用的便携式手掌尺寸格式。它可以执行活性化合物的单独或多次测量,例如生物标志物。

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  • 来源
    《Analytical chemistry》 |2017年第17期|共7页
  • 作者单位

    Brno Univ Technol FEEC Dept Microelect Tech 10 CZ-61600 Brno Czech Republic;

    Brno Univ Technol Cent European Inst Technol Purkynova 648-125 Brno 62100 Czech Republic;

    Northwestern Polytech Univ Sch Mech Engn Dept Microsyst Engn 127 West Youyi Rd Xian 710072 Shaanxi Peoples R China;

    Masaryk Mem Canc Inst RECAMO Zluty Kopec 7 CZ-65653 Brno Czech Republic;

    Northwestern Polytech Univ Sch Mech Engn Dept Microsyst Engn 127 West Youyi Rd Xian 710072 Shaanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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