Bi Meng, He Yifan, Wang Yuchang, Yang Wenlong, Qin Ban, Xu Jiaojiao, Wang Xiuxiu, Wang Binsong, Dong Yinmao, Gao Yachen, Li Chensha
Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education of the People's Republic of China, Heilongjiang University, Harbin 15008, China.
Key Laboratory of Cosmetic, Beijing Technology and Business University, Beijing 100048, China.
Polymers (Basel). 2019 Apr 23;11(4):735. doi: 10.3390/polym11040735.
Crosslinked liquid crystalline polymers (CLCPs) containing azobenzene (AZO-CLCPs) are a type of promising material due to their significance in the design of light-driven smart actuators. Developing AZO-CLCP composites by incorporating AZO-CLCPs with other materials is an effective way of enhancing their practicability. Herein, we report an AZO-CLCP/CNT nanocomposite prepared by the in situ polymerization of diacrylates containing azobenzene chromophores on carbon nanotube (CNT) sheets. The liquid crystal phase structure of CLCP matrix was evidenced by the two-dimensional X-ray scattering. The prepared pure AZO-CLCP films and AZO-CLCP/CNT nanocomposite films demonstrated strong reversible photo-triggered deformation under the irradiation of UV light at 366 nm of wavelength, as a result of photo-induced isomerization of azobenzene moieties in the polymer network. But compared to pure AZO-CLCP films, the AZO-CLCP/CNT nanocomposite films could much more rapidly return to their initial shapes after the UV light irradiation was removed due to the elasticity effect of CNT sheets. The deformation behavior of AZO-CLCP/CNT nanocomposite films under the light irradiation was also different from that of the pure AZO-CLCP films due to the interfacial interaction between a polymer network and CNT sheet. Furthermore, incorporation of a CNT sheet remarkably increased the mechanical strength and robustness of the material. We also used this AZO-CLCP/CNT nanocomposite as a microvalve membrane actuator, which can be controlled by light, for a conceptual device of a microfluidic system. The results showed that this AZO-CLCP/CNT nanocomposite may have great potential in smart actuator applications for biological engineering, medical treatment, environment detection and microelectromechanical systems (MEMS), etc.
含偶氮苯的交联液晶聚合物(AZO-CLCPs)因其在光驱动智能致动器设计中的重要性而成为一类有前途的材料。将AZO-CLCPs与其他材料结合制备AZO-CLCP复合材料是提高其实用性的有效途径。在此,我们报道了一种通过在碳纳米管(CNT)片上原位聚合含偶氮苯发色团的二丙烯酸酯制备的AZO-CLCP/CNT纳米复合材料。二维X射线散射证明了CLCP基体的液晶相结构。制备的纯AZO-CLCP薄膜和AZO-CLCP/CNT纳米复合薄膜在波长为366 nm的紫外光照射下表现出强烈的可逆光触发变形,这是由于聚合物网络中偶氮苯部分的光致异构化。但与纯AZO-CLCP薄膜相比,由于CNT片的弹性效应,AZO-CLCP/CNT纳米复合薄膜在紫外光照射去除后能更快地恢复到初始形状。由于聚合物网络与CNT片之间的界面相互作用,AZO-CLCP/CNT纳米复合薄膜在光照下的变形行为也与纯AZO-CLCP薄膜不同。此外,加入CNT片显著提高了材料的机械强度和坚固性。我们还将这种AZO-CLCP/CNT纳米复合材料用作微阀膜致动器,用于微流体系统的概念装置,该致动器可由光控制。结果表明,这种AZO-CLCP/CNT纳米复合材料在生物工程、医疗、环境检测和微机电系统(MEMS)等智能致动器应用中可能具有巨大潜力。