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Optimization of PEDOT Films in Ionic Liquid Supercapacitors: Demonstration As a Power Source for Polymer Electrochromic Devices

机译:离子液体超级电容器中PEDOT膜的优化:演示作为聚合物电致变色器件的电源

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We report on the optimization of the capacitive behavior of poly(3,4-ethylenedioxythiophene) (PEDOT) films as polymeric electrodes in flexible, Type I electrochemical supercapacitors (ESCs) utilizing ionic liquid (IL) and organic gel electrolytes. The device performance was assessed based on figures of merit that are critical to evaluating the practical utility of electroactive polymer ESCs. PEDOT/IL devices were found to be highly stable over hundreds of thousands of cycles and could be reversibly charged/discharged at scan rates between 500 mV/s and 2 V/s depending on the polymer loading. Furthermore, these devices exhibit leakage currents and self-discharge rates that are comparable to state of the art electrochemical double-layer ESCs. Using an IL as device electrolyte allowed an extension of the voltage window of Type I ESCs by 60%, resulting in a 2.5-fold increase in the energy density obtained. The efficacies of tjese PEDOT ESCs were assessed by using them as a power source for a high-contrast and fast-switching electrochromic device, demonstrating their applicability in small organic electronic-based devices.
机译:我们报告了聚(3,4-乙撑二氧噻吩)(PEDOT)薄膜作为聚合物电极在利用离子液体(IL)和有机凝胶电解质的柔性I型电化学超级电容器(ESC)中的电容行为的优化。基于对评估电活性聚合物ESC的实用性至关重要的品质因数来评估设备性能。发现PEDOT / IL器件在数十万次循环中具有很高的稳定性,并且可以根据聚合物的加载量在500 mV / s至2 V / s的扫描速率下可逆地充电/放电。此外,这些器件表现出的泄漏电流和自放电率与现有技术的电化学双层ESC相当。使用IL作为器件电解质可以使I型ESC的电压窗口扩展60%,从而使获得的能量密度提高2.5倍。通过将PEDOT ESC用作高对比度和快速切换电致变色设备的电源,评估了它们的功效,证明了它们在小型有机电子设备中的适用性。

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