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Optimization of the geometry and porosity of microelectrode arrays for sensor design

机译:优化用于传感器设计的微电极阵列的几何形状和孔隙率

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This paper describes the systematic investigation of a range of microelectrode arrays with varying dimensions fabricated by standard photolithographic and reactive-ion etching techniques. As expected from theory, the electrochemical behavior of microelectrode arrays with a constant individual diameter varied strongly with center-to-center spacing, the larger the spacing the more sigmoidal the recorded voltammogram. Furthermore, the behavior of arrays with a constant relative center-to-center spacing is shown to vary with individual electrode diameter, the arrays with the smallest electrodes producing strongly peaked voltammograms. Peak current densities and signal-to-noise ratios were also obtained for a variety of array geometries, and the use of electrodeposited platinum black electrodes was investigated. To demonstrate one advantage of using a loosely packed microelectrode array in electroanalysis, a ferrocene-mediated enzyme-linked assay involving the biocatalytic reduction of H2O2 was investigated. Results showed an improved temporal response, with current-time transients reaching a steadystate response more quickly using arrays with increased center-center spacings. [References: 26]
机译:本文介绍了通过标准光刻和反应离子刻蚀技术制造的一系列尺寸可变的微电极阵列的系统研究。从理论上可以预期,具有恒定个体直径的微电极阵列的电化学行为会随着中心到中心的间距而发生很大变化,间距越大,记录的伏安图越呈S形。此外,具有恒定的相对中心间距的阵列的行为被显示为随各个电极直径而变化,具有最小电极的阵列产生强峰伏安图。还获得了各种阵列几何形状的峰值电流密度和信噪比,并研究了电沉积铂黑电极的使用。为了证明在电分析中使用松散堆积的微电极阵列的一个优势,研究了涉及生物催化还原H2O2的二茂铁​​介导的酶联测定。结果显示改进的时间响应,使用具有增加的中心距的阵列,当前时间瞬变可以更快地达到稳态响应。 [参考:26]

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