Li Guangyao, Xu Mingcong, Zhang Siyu, Yang Guang, Li Wei
Department of Chemistry and Chemical engineering, College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, Hexing Road 26, Harbin, 150040, P. R. China.
Key Laboratory of Bio-based Material Science and Technology of Ministry of Education, Northeast Forestry University, Hexing Road 26, Harbin, 150040, P. R. China.
Macromol Rapid Commun. 2022 Mar;43(6):e2100904. doi: 10.1002/marc.202100904. Epub 2022 Feb 13.
Chirality represents a fundamental structure in nature and the induction and reversible modulation of supramolecular chirality with feasible techniques is of great value in the design of new chiroptical smart materials. Herein, two kinds of azobenzene side-chain polymers (without spacer: Azo-PMA0; with 6 spacers: Azo-PMA6) are synthesized, the length of spacer and azobenzene chromophores play a vital role in chirality transfer and modulation. The supramolecular chiral arrangement of Azo-PMA0 (amorphous phase) can be completely controlled and reversibly modulated over multiple cycles by 450 nm circularly polarized light driven by the supramolecular interaction between azo groups of polymer chains, with an absorption dissymmetry factor (g) value of 0.0019. The chiroptical properties of Azo-PMA6 (liquid crystal state) can also be reversibly modulated by UV light and thermal annealing treatment during trans-cis isomerization of azo chromophore, with the g-value changes from 0-0.038. The successful construction of reversible chiral induction and modulation based on side chain azobenzene polymers may pave the way for designing photo-switchable functional materials.
手性是自然界中的一种基本结构,利用可行的技术诱导和可逆调节超分子手性在新型手性光智能材料的设计中具有重要价值。在此,合成了两种偶氮苯侧链聚合物(无间隔基:Azo-PMA0;有6个间隔基:Azo-PMA6),间隔基和偶氮苯发色团的长度在手性转移和调节中起着至关重要的作用。Azo-PMA0(非晶相)的超分子手性排列可以通过聚合物链偶氮基团之间的超分子相互作用,在450nm圆偏振光的驱动下,在多个循环中完全得到控制并可逆调节,吸收不对称因子(g)值为0.0019。Azo-PMA6(液晶态)的手性光性质在偶氮发色团的反式-顺式异构化过程中也可以通过紫外光和热退火处理进行可逆调节,g值从0变为0.038。基于侧链偶氮苯聚合物成功构建可逆手性诱导和调节可能为设计光开关功能材料铺平道路。