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Amperometric Electrochemical Sensor Array for On-Chip Simultaneous Imaging:Circuit and Microelectrode Design Considerations

机译:片上同步成像的安培电化学传感器阵列:电路和微电极设计注意事项

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摘要

We propose a switching circuit and an electrode design for measuring multiple microelectrode currents at high speed. Our goal is to realize two-dimensional (2D) imaging of analyte distributions by amperometry. In the proposed amperometric sensor circuit, each electrode is connected to two switches. During measurement, the potential of all electrodes is fixed, the steady-state current is maintained, and the switching is carried out while maintaining the steady-state current. A current buffer circuit was fabricated, its the characteristics were evaluated. The time course of the electrochemical current of an electrolyte was measured using the current buffer circuit. We have also proposed a microelectrode structure to suppress the expansion of the diffusion layer over the microelectrode array. Each electrode has a steady-state current, which is amplified by a redox cycle, and the time to reach the steady state is reduced to about 1/10 of that required by a single microelectrode. The relation between the characteristic lengths of the electrode geometry and the current gain is presented.
机译:我们提出了一种用于高速测量多个微电极电流的开关电路和电极设计。我们的目标是通过电流分析法实现分析物分布的二维(2D)成像。在提出的安培传感器电路中,每个电极都连接到两个开关。在测量过程中,所有电极的电位都固定,保持稳态电流,并在保持稳态电流的同时进行切换。制作了电流缓冲电路,并对其特性进行了评估。使用电流缓冲电路测量电解质的电化学电流的时间进程。我们还提出了微电极结构以抑制扩散层在微电极阵列上的膨胀。每个电极都有一个稳态电流,该电流会被氧化还原循环放大,达到稳态所需的时间将减少到单个微电极所需时间的1/10。给出了电极几何形状的特征长度与电流增益之间的关系。

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  • 来源
    《Japanese journal of applied physics》 |2011年第4issue2期|p.04DL03.1-04DL03.9|共9页
  • 作者单位

    Department of Electrical and Computer Science, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

    Department of Electrical and Computer Science, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

    Department of Electrical and Computer Science, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

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