Electrical characterization of new electrochromic devices

R. Vergaz, D. Barrios, J. Sánchez-Pena, C. Pozo‐Gonzalo, J. Pomposo
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Abstract

Electrochromic devices change their color and optical properties with applied voltage. A new symmetrical electrochromic configuration was constructed in previous works, where PEDOT acted as electrochromic layer or as counter electrode layer, depending on the polarity of the applied voltage. Devices of around 500mm2 and switching voltages from 0,5V to 2V are used in this work. Measured electrochemical impedance is fitted to an equivalent circuit based on a Randies cell, with Warburg impedance simulating ionic diffusion at low frequencies. Voltage dependence is analyzed for the first time in this kind of devices. Results show homogeneity problems in the contact layers, not seen in normal operation, and the voltage dependence on some construction parameters. This will be used to improve the devices construction, but improvements in the equivalent circuit should also be made. The proposed equivalent circuit is not valid after the redox reaction, from 1.5 to 2V.
新型电致变色器件的电学特性
电致变色器件随外加电压改变其颜色和光学性质。在以前的工作中,构建了一种新的对称电致变色结构,其中PEDOT根据外加电压的极性作为电致变色层或反电极层。在这项工作中使用的器件约为500mm2,开关电压为0.5 v至2V。测量的电化学阻抗拟合到基于randes电池的等效电路中,Warburg阻抗模拟低频离子扩散。首次对该类器件的电压依赖性进行了分析。结果表明,接触层存在均匀性问题,正常工作时不存在均匀性问题,且电压依赖于某些结构参数。这将用于改进器件结构,但等效电路也应进行改进。所提出的等效电路在1.5 ~ 2V的氧化还原反应后失效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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