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用于高性能和可靠性的单层电致变色系统的高压脉冲辅助操作。

High-Voltage Pulse-Assisted Operation of Single-Layer Electrochromic Systems for High Performance and Reliability.

作者信息

Yu Kyeong Su, Kim Seon Yeong, Moon Hong Chul

机构信息

Department of Chemical Engineering, University of Seoul, Seoul 02504, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2023 Sep 27;15(38):45315-45321. doi: 10.1021/acsami.3c10467. Epub 2023 Sep 12.

DOI:10.1021/acsami.3c10467
PMID:37700484
Abstract

A single-layer electrochromic device (SL-ECD) based on ionic conductors containing EC chromophores provides a very simple platform that can be readily fabricated by sandwiching the EC layer between two electrodes. The operation of SL-ECDs is governed by the diffusion of redox species due to their SL structure, which causes a relatively slow dynamic response. In this study, we propose an effective high-voltage pulse injection strategy to improve the performance of SL-ECDs. Applying a programmed voltage wave composed of DC and high-voltage pulses promotes coloration/bleaching switching without degrading device stability, which is more advantageous than applying high DC voltages. We modified the input voltage profile by considering fundamental parameters, such as the amplitude and duty ratio of additional voltage pulses. The coloration and bleaching dynamic responses with the optimized voltage wave are ∼62 and ∼20% faster, respectively, compared with those with the simple DC input. Furthermore, the additionally injected pulse aids in increasing the coloration efficiency from ∼95.3 to ∼168.6 cm C. Another notable feature of this system is that the device operates stably when a programmed voltage wave is used. These results indicate that the concept of high-voltage pulse-assisted operation of SL-ECDs is a straightforward but effective method for improving device performance without changing the EC chromophore or device structure.

摘要

基于含有电致变色(EC)发色团的离子导体的单层电致变色器件(SL-ECD)提供了一个非常简单的平台,通过将EC层夹在两个电极之间即可轻松制造。由于其单层结构,SL-ECD的运行受氧化还原物种扩散的支配,这导致相对较慢的动态响应。在本研究中,我们提出了一种有效的高压脉冲注入策略来提高SL-ECD的性能。施加由直流和高压脉冲组成的编程电压波可促进着色/褪色切换,而不会降低器件稳定性,这比施加高直流电压更具优势。我们通过考虑诸如附加电压脉冲的幅度和占空比等基本参数来修改输入电压曲线。与简单直流输入相比,优化电压波下的着色和褪色动态响应分别快约62%和约20%。此外,额外注入的脉冲有助于将着色效率从约95.3提高到约168.6 cm C。该系统的另一个显著特点是,当使用编程电压波时,器件能稳定运行。这些结果表明,SL-ECD的高压脉冲辅助运行概念是一种在不改变EC发色团或器件结构的情况下提高器件性能的直接但有效的方法。

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