Hu Bin, Song Haizeng, Zhang Xinlei, He Yuan, Ren Jingshun, Huang Jingbin
Henan Key Laboratory of Rare Earth Functional Materials, The Key Laboratory of Rare Earth Functional Materials and Applications, Zhoukou Normal University, Zhoukou 466001, China.
Polymers (Basel). 2024 Dec 19;16(24):3546. doi: 10.3390/polym16243546.
Phenoxazine, as an organic-small-molecule chromophore, has attracted much attention for its potential electrochromic applications recently. To develop appealing materials, phenoxazine chromophores were introduced at the N-position of carbazole-thiophene pigment, yielding two novel monomers (DTCP and DDCP), whose chemical structures were characterized by NMR, HRMS and FTIR. The results of the optical property study indicate that little influence could be observed in the presence of the phenoxazine chromophore. Corresponding polymer films on the surface of an ITO/glass electrode were obtained through electropolymerization. The electrochemical features displayed were various due to the introduction of the phenoxazine group. The spectroelectrochemical results demonstrate that the color of the polymer films could be changed. Compared with the PDDC films, the PDDCP films exhibited three different colors (tangerine, green and purple colors) in different redox states, which could be attributed to the synergistic effect between the carbazole-thiophene conjugate chain and the phenoxazine group. Moreover, fast switching time could be seen due to the presence of the phenoxazine chromophore. This study could provide a reference for obtaining high-performance electrochromic materials.
吩恶嗪作为一种有机小分子发色团,近年来因其潜在的电致变色应用而备受关注。为了开发有吸引力的材料,在咔唑-噻吩颜料的N位引入了吩恶嗪发色团,得到了两种新型单体(DTCP和DDCP),其化学结构通过核磁共振、高分辨质谱和傅里叶变换红外光谱进行了表征。光学性质研究结果表明,在吩恶嗪发色团存在的情况下几乎观察不到影响。通过电聚合在ITO/玻璃电极表面获得了相应的聚合物薄膜。由于吩恶嗪基团的引入,所显示的电化学特征各不相同。光谱电化学结果表明,聚合物薄膜的颜色可以改变。与PDDC薄膜相比,PDDCP薄膜在不同的氧化还原状态下呈现出三种不同的颜色(橘色、绿色和紫色),这可归因于咔唑-噻吩共轭链与吩恶嗪基团之间的协同效应。此外,由于吩恶嗪发色团的存在,可以看到快速的切换时间。该研究可为获得高性能电致变色材料提供参考。