Chen Dinghui, Tong Zizheng, Rao Qiushi, Liu Xingchen, Meng Hong, Huang Wei
Frontiers Science Center for Flexible Electronics, Xi'an Institute of Flexible Electronics (IFE), Northwestern Polytechnical University (NPU), Xi'an, China.
School of Advanced Materials, Peking University Shenzhen Graduate School, Peking University, Shenzhen, China.
Nat Commun. 2024 Sep 30;15(1):8457. doi: 10.1038/s41467-024-52430-2.
Black-to-transparent electrochromism is hailed as the holy grail of organic optoelectronics. Despite its potential, designing black electrochromic materials that fully absorb visible light remains a significant challenge. Electroactive materials that simultaneously possess excellent cyclic stability, fast switching times, and high coloration efficiency are rare. In this study, we successfully designed copolymers that fully absorb the entire visible spectrum by judiciously selecting four types of monomers. We incorporated two types of polar side chains to synergistically enhance the ionic conductivity of the copolymers, thus improving the performance of electrochromic devices. Among these electrochromic devices, the P2-a device exhibits cycling stability exceeding 10 cycles, and the P2-c device demonstrates a coloring/ bleaching time of 0.82 s/0.86 s and achieves a coloration efficiency of 1078 cm²/C. This study proposes a strategy for designing and synthesizing high-performance black electrochromic copolymers.
从黑色到透明的电致变色被誉为有机光电子学的圣杯。尽管具有潜力,但设计能完全吸收可见光的黑色电致变色材料仍然是一项重大挑战。同时具备优异的循环稳定性、快速切换时间和高着色效率的电活性材料十分罕见。在本研究中,我们通过明智地选择四种单体,成功设计出了能完全吸收整个可见光谱的共聚物。我们引入了两种极性侧链,以协同增强共聚物的离子导电性,从而提高电致变色器件的性能。在这些电致变色器件中,P2-a器件表现出超过10次循环的循环稳定性,P2-c器件的着色/漂白时间为0.82秒/0.86秒,着色效率达到1078平方厘米/库仑。本研究提出了一种设计和合成高性能黑色电致变色共聚物的策略。