Ke Yajie, Wang Zitao, Xie Haiyi, Khalifa Mahmoud A, Zheng Jianming, Xu Chunye
Hefei National Research Center for Physical Sciences at the Microscale, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei 230026, China.
Anhui Province Key Laboratory of Condensed Matter Physics at Extreme Conditions, High Magnetic Field Laboratory, The Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China.
Membranes (Basel). 2023 Jun 15;13(6):601. doi: 10.3390/membranes13060601.
Complementary electrochromic devices (ECDs) composed of WO and NiO electrodes have wide applications in smart windows. However, they have poor cycling stability due to ion-trapping and charge mismatch between electrodes, which limits their practical application. In this work, we introduce a partially covered counter electrode (CE) composed of NiO and Pt to achieve good stability and overcome the charge mismatch based on our structure of electrochromic electrode/Redox/catalytic counter electrode (ECM/Redox/CCE). The device is assembled using a NiO-Pt counter electrode with WO as the working electrode, and PC/LiClO containing a tetramethylthiourea/tetramethylformaminium disulfide (TMTU/TMFDS) redox couple as the electrolyte. The partially covered NiO-Pt CE-based ECD exhibits excellent EC performance, including a large optical modulation of 68.2% at 603 nm, rapid switching times of 5.3 s (coloring) and 12.8 s (bleaching), and a high coloration efficiency of 89.6 cm·C. In addition, the ECD achieves a good stability of 10,000 cycles, which is promising for practical application. These findings suggest that the structure of ECC/Redox/CCE could overcome the charge mismatch problem. Moreover, Pt could enhance the Redox couple's electrochemical activity for achieving high stability. This research provides a promising approach for the design of long-term stable complementary electrochromic devices.
由WO和NiO电极组成的互补电致变色器件(ECD)在智能窗户中有广泛应用。然而,由于离子捕获和电极之间的电荷不匹配,它们的循环稳定性较差,这限制了其实际应用。在这项工作中,我们基于电致变色电极/氧化还原/催化对电极(ECM/氧化还原/CCE)结构,引入了一种由NiO和Pt组成的部分覆盖对电极(CE),以实现良好的稳定性并克服电荷不匹配问题。该器件使用以WO为工作电极的NiO-Pt对电极进行组装,并以含有四甲基硫脲/四甲基甲脒二硫化物(TMTU/TMFDS)氧化还原对的PC/LiClO作为电解质。基于部分覆盖的NiO-Pt CE的ECD表现出优异的电致变色性能,包括在603 nm处68.2%的大光学调制、5.3 s(着色)和12.8 s(漂白)的快速切换时间以及89.6 cm·C的高着色效率。此外,该ECD实现了10000次循环的良好稳定性,这对于实际应用很有前景。这些发现表明ECC/氧化还原/CCE结构可以克服电荷不匹配问题。此外,Pt可以增强氧化还原对的电化学活性以实现高稳定性。这项研究为设计长期稳定的互补电致变色器件提供了一种有前景的方法。