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首页> 外文期刊>ChemElectroChem >Impedance Spectroscopy of Spin-Cast and Electrochemically Deposited PEDOT:PSS Films on Microfabricated Electrodes with Various Areas
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Impedance Spectroscopy of Spin-Cast and Electrochemically Deposited PEDOT:PSS Films on Microfabricated Electrodes with Various Areas

机译:旋转和电化学沉积PEDOT的阻抗光谱:PSS薄膜在微制造电极上有各个区域

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摘要

We have examined the electrochemical impedance spectroscopy (EIS) of PEDOT: PSS-coated gold electrodes in various electrolytes as a function of temporal frequency (from 0.1 to 104 Hz) by using a custom-designed microfabricated substrate. The electrode areas were systematically varied over a broad range in nominal size from 10 x 10 mu m (100 mu m(2)) to 500 x 500 mu m (2.5 x 10(5) mu m(2)). Comparisons were made between spincast PEDOT: PSS crosslinked with GOPS and electrochemically deposited PEDOT: PSS films with similar thicknesses. The impedance spectra of the PEDOT: PSS-coated electrodes with various sizes could all be reasonably well described by a two-element equivalent circuit model with a solution resistance R-s and a film capacitance C. These two parameters together define a characteristic temporal frequency f(c)= 1/(2 pi RsC). By normalizing the impedance with respect to R-s (Z(n)=vertical bar Z vertical bar/R-s) and the frequency with respect to f(c) (f(n)=f/f(c)), we found that all of the experimental Bode curves could be collapsed onto a single master plot of Z(n) vs. f(n). In addition, analytical formulas that allow the estimation of the film impedance magnitude vertical bar Z vertical bar and phase phi were derived and experimentally validated. These results are of fundamental interest and are also anticipated to be important for the design, characterization, and optimization of conjugated polymer films for interfacing biomedical devices with living tissue.
机译:我们已经检查了PEDOT的电化学阻抗光谱(EIS):通过使用定制设计的微制造基材作为时间频率(从0.1至104Hz)的函数的PSS涂覆的金电极。在标称尺寸的宽范围内系统地改变电极区域(100μm(2))至500×500μm(2.5×10(5)mu m(2))。在Spincast PEDOT之间进行比较:用GOPS交联和电化学沉积的PEDOT:PSS膜,具有相似的厚度。 PEDOT的阻抗光谱:具有各种尺寸的PSS涂覆的电极可以通过具有溶液电阻RS和膜电容C的双元等效电路模型来合理地良好地描述。这两个参数一起定义特征时间频率f( c)= 1 /(2 pi RSC)。通过对Rs(Z(n)=垂直条Z垂直条/ RS)的阻抗来归一化,相对于F(c)(f(n)= f / f(c)),我们发现所有实验性凸曲线可以折叠到Z(n)与f(n)的单个母图上。另外,允许估计薄膜阻抗幅度垂直条Z垂直条和相Phi估计的分析公式并进行实验验证。这些结果具有基本兴趣,并且还预计对于与活组织接口生物医学装置的共轭聚合物膜的设计,表征和优化是重要的。

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