Zhang Lian, Liu Fenggang, Yang Ruoxi, Huo Fuyang, Zhang Weijun, Zhang Yu, Liu Chuying, Hui Chunngai, Wang Jiahai
School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, P. R. China.
Huawei Technologies, Bantian Industrial Base, Shenzhen, 518129, P. R. China.
Adv Sci (Weinh). 2023 Nov;10(31):e2304229. doi: 10.1002/advs.202304229. Epub 2023 Sep 10.
The development of electro-optical materials with high chromophore loading levels that possess ultrahigh electro-optic coefficients and high long term alignment stability is a challenging topic. Anthracene-maleimide Diels-Alder (DA) reaction and π-π interaction of Anthracene-pentafluorobenzene and benzene-pentafluorobenzene are developed for making highly efficient binary cross-linkable/self-assembled dendritic chromophores FZL1-FZL4. A covalently or non-covalently cross-linked network is formed by DA reaction or π-π interaction after electric field poling orientation, which greatly improves the long-term alignment stability of the materials. An electro-optic coefficient up to 266 pm V and glass transition temperature as high as 178 °C are achieved in cross-linked film FZL1/FZL2, and 272-308 pm V is achieved for self-assembled films FZL1/FZL4 and FZL3/FZL4 due to high chromophore density (3.09-4.02 × 10 molecules cm ). Long-term alignment stability tests show that after heating at 85 °C for over 500 h, 99.73% of the initial r value is maintained for poled crosslinked electro-optic films 1:1 FZL1/FZL2. The poled self-assembled electro-optic films 1:1 FZL1/FZL4 and 1:1 FZL3/FZL4 can still maintain more than 97.11% and 98.23%, respectively, of the original electro-optic coefficient after being placed at room temperature for 500 h. The excellent electro-optic coefficient and stability of the material indicate the practical application prospects of organic electro-optic materials.
开发具有高发色团负载水平、超高电光系数和高长期取向稳定性的电光材料是一个具有挑战性的课题。蒽-马来酰亚胺狄尔斯-阿尔德(DA)反应以及蒽-五氟苯和苯-五氟苯之间的π-π相互作用被用于制备高效的二元可交联/自组装树枝状发色团FZL1-FZL4。电场极化取向后,通过DA反应或π-π相互作用形成共价或非共价交联网络,这大大提高了材料的长期取向稳定性。在交联膜FZL1/FZL2中实现了高达266 pm V的电光系数和高达178 °C的玻璃化转变温度,由于高发色团密度(3.09 - 4.02×10分子/cm),自组装膜FZL1/FZL4和FZL3/FZL4的电光系数达到272 - 308 pm V。长期取向稳定性测试表明,在85 °C加热超过500小时后,极化交联电光膜1:1 FZL1/FZL2保持了初始r值的99.73%。极化自组装电光膜1:1 FZL1/FZL4和1:1 FZL3/FZL4在室温下放置500小时后,仍分别能保持原始电光系数的97.11%和98.23%以上。该材料优异的电光系数和稳定性表明了有机电光材料的实际应用前景。