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Multichannel Boron Doped Nanocrystalline Diamond Ultramicroelectrode Arrays: Design Fabrication and Characterization

机译:多通道掺硼纳米晶金刚石超微电极阵列:设计制备和表征

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摘要

We report on the fabrication and characterization of an 8 × 8 multichannel Boron Doped Diamond (BDD) ultramicro-electrode array (UMEA). The device combines both the assets of microelectrodes, resulting from conditions in mass transport from the bulk solution toward the electrode, and of BDD's remarkable intrinsic electrochemical properties. The UMEAs were fabricated using an original approach relying on the selective growth of diamond over pre-processed 4 inches silicon substrates. The prepared UMEAs were characterized by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). The results demonstrated that the electrodes have exhibited a very fast electrode transfer rate (k0) up to 0.05 cm·s−1 (in a fast redox couple) and on average, a steady state limiting current (in a 0.5 M potassium chloride aqueous solution containing 1 mM Fe(CN)64− ion at 100 mV·s−1) of 1.8 nA. The UMEAs are targeted for electrophysiological as well as analytical applications.
机译:我们报告了8×8多通道掺硼金刚石(BDD)超微电极阵列(UMEA)的制造和表征。该设备既结合了微电极的优点,又有BDD显着的固有电化学特性,这些优点来自于从本体溶液向电极的质量传输条件。 UMEA是使用原始方法制造的,该方法依赖于在经过预处理的4英寸硅基板上选择性生长钻石。通过循环伏安法(CV)和电化学阻抗谱(EIS)对制备的UMEA进行了表征。结果表明,电极在高达0.05 cm·s -1 的情况下(快速氧化还原电对)表现出非常快的电极传输速率(k0),并且平均而言具有稳态极限电流(在0.5 m氯化钾水溶液,含1 mM Fe(CN)6 4-离子,电流100 mV·s -1 )为1.8 nA。 UMEA针对电生理和分析应用。

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