Zhang Zhaoyang, Ma Shengkui, Gao Jianfeng
School of Chemistry and Chemical Engineering, North University of China, Taiyuan 030051, China.
State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Functional Polymer Materials (Ministry of Education), Tianjin Key Laboratory of Functional Polymer Materials, College of Chemistry Nankai University, Tianjin 300071, China.
Molecules. 2025 May 9;30(10):2106. doi: 10.3390/molecules30102106.
Hydrogen-bonded cross-linked main chain azobenzene (azo) photoactive polymers have broad application prospects in flexible actuators, optical actuators, and other fields. Most of the research on this kind of photoresponsive material is mainly focused on air, and exploration in solvents remains underexplored. In this paper, azobenzene polyamide ester semicrystalline polymer (PEA-6T) with hydrogen-bond cross-linking was synthesized by Michael addition polymerization. The uniaxially oriented polymer film with high orientation (48.85%) and fast response (5 s under UV light and 55 s under visible light) was obtained by a simple solution casting/mechanical stretching method. Compared with PEA-2T and PEA-4T, PEA-6T exhibits enhanced mechanical properties (elastic modulus increased by 17.4%; yield strength increased by 34.1%; breaking strength increased by 75.4%; elongation at break increased by 33.8%; toughness increased by 101.3%; photoinduced stress increased by 43.5%) and reduced light response time (decreased by 58.3% in ultraviolet light and 50% in visible light) due to the elongation of the compliant chain length. The thin PEA-6T film exhibited light-induced deformation not only in air but also in polar solvents such as water, methanol, ethanol, butanol, and saline solutions (e.g., normal saline, 0.9 wt% NaCl, and simulated seawater, 3.5 wt% NaCl). In addition, polarizing optical microscope (POM) observations showed that the brightness and texture direction of the films remained stable (Δ < 5%), the light response time was consistent (6 s under UV light, 65 s under visible light), the light-induced stress retention rate was 95%, and the films exhibited good solvent resistance. This study bridges the research gap in azobenzene photoresponsive materials in solvent environments, and the material shows potential for applications in marine equipment coatings or biomedical actuators.
氢键交联的主链偶氮苯光活性聚合物在柔性致动器、光学致动器等领域具有广阔的应用前景。目前对这类光响应材料的研究大多集中在空气中,在溶剂中的探索仍未充分开展。本文通过迈克尔加成聚合反应合成了具有氢键交联的偶氮苯聚酰胺酯半结晶聚合物(PEA - 6T)。采用简单的溶液浇铸/机械拉伸法制备了具有高取向度(48.85%)和快速响应(紫外光下5 s,可见光下55 s)的单轴取向聚合物薄膜。与PEA - 2T和PEA - 4T相比,由于柔顺链长度的延长,PEA - 6T的机械性能增强(弹性模量提高17.4%;屈服强度提高34.1%;断裂强度提高75.4%;断裂伸长率提高33.8%;韧性提高101.3%;光致应力提高43.5%),光响应时间缩短(紫外光下减少58.3%,可见光下减少50%)。PEA - 6T薄膜不仅在空气中,而且在水、甲醇、乙醇、丁醇和盐溶液(如生理盐水、0.9 wt% NaCl和模拟海水、3.5 wt% NaCl)等极性溶剂中都表现出光致变形。此外,偏光光学显微镜(POM)观察表明,薄膜的亮度和纹理方向保持稳定(Δ < 5%),光响应时间一致(紫外光下6 s,可见光下65 s),光致应力保留率为95%,薄膜表现出良好的耐溶剂性。本研究填补了偶氮苯光响应材料在溶剂环境中的研究空白,该材料在海洋装备涂层或生物医学致动器方面具有应用潜力。