液晶
材料科学
顺势排列
变形(气象学)
掺杂剂
聚酰亚胺
平面的
各向异性
执行机构
复合材料
光学
热的
辐照
光强度
光电子学
兴奋剂
计算机科学
人工智能
物理
核物理学
气象学
图层(电子)
计算机图形学(图像)
作者
Ghislaine Vantomme,Anne Hélène Gélébart,Dirk J. Broer,E. W. Meijer
摘要
A strategy based on doped liquid crystalline networks is described to create mechanical self-sustained oscillations of plastic films under continuous light irradiation. The photo-excitation of dopants that can quickly dissipate light into heat, coupled with anisotropic thermal expansion and self-shadowing of the film, gives rise to the self-sustained deformation. The oscillations observed are influenced by the dimensions and the modulus of the film, and by the directionality and intensity of the light. The system developed offers applications in energy conversion and harvesting for soft-robotics and automated systems. The general method described here consists of creating free-standing liquid crystalline films and characterizing the mechanical and thermal effects observed. The molecular alignment is achieved using alignment layers (rubbed polyimide), commonly used in the display manufacturing industry. To obtain actuators with large deformation, the mesogens are aligned and polymerized in a splay/bend configuration, i.e., with the director of the liquid crystals (LCs) going gradually from planar to homeotropic through the film thickness. Upon irradiation, the mechanical and thermal oscillations obtained are monitored with a high-speed camera. The results are further quantified by image analysis using an image processing program.
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