首页> 外文期刊>IEEE transactions on nanobioscience >Electrode–Electrolyte Interface Impedance Characterization of Ultra-Miniaturized Microelectrode Arrays Over Materials and Geometries for Sub-Cellular and Cellular Sensing and Stimulation
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Electrode–Electrolyte Interface Impedance Characterization of Ultra-Miniaturized Microelectrode Arrays Over Materials and Geometries for Sub-Cellular and Cellular Sensing and Stimulation

机译:电极 - 电解质接口超小型化微电极阵列对材料和几何形状的用于子细胞和蜂窝感测和刺激的影响

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摘要

Electrochemical interfaces with low impedance, high biocompatibility, and long-term stability are of paramount importance for microelectrode arrays (MEAs), that are widely used in numerous cellular sensing/stimulation applications, e.g., brain interface, electroceuticals, neuroprosthetics, drug discovery, chemical screening, and fundamental biological research. It is becoming increasingly critical since sensing/actuations at sub-cellular resolution necessitate ultra-miniaturized electrodes, which exhibit exacerbated electrochemical interfaces, especially on interfacial impedance. This paper reports the first comprehensive characterization and interfacial electrochemical impedance spectroscopy (EIS) of the ultra-miniaturized electrodes for different electrode sizes (8 x 8 mu m(2), 16 x 16 mu m(2), and 32 x 32 mu m(2)) and a wide material collection (Au, Pt, TiN, and ITO). Equivalent electrochemical interfacial circuit models with interface capacitance, charge transfer resistance, and solution resistance are obtained for all the electrode designs based on their EIS measurements. The results can potentially guide the designs of ultra miniaturized MEAs for future bioelectronics systems.
机译:具有低阻抗,高生物相容性和长期稳定性的电化学界面对于微电极阵列(MEA)至关重要,即广泛用于许多蜂窝感测/刺激应用,例如脑界面,电气保护,神经调节剂,药物发现,化学品筛选和基本生物研究。由于亚细胞分辨率的感测/致动需要超小型电极的感测/致动,因此它变得越来越关键,其表现出加剧的电化学界面,特别是在界面阻抗。本文报道了用于不同电极尺寸的超小型电极的第一综合表征和界面电化学阻抗光谱(EIS)(8×8μm(2),16 x 16 mu m(2),和32 x 32 mu m (2))和宽容材料(AU,PT,TIN和ITO)。基于其EIS测量,为所有电极设计获得了具有界面电容,电荷传递电阻和溶液电阻的等效电化学界面电路模型。结果可能引导未来生物电化系统超小型化测量的设计。

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