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Simultaneous Analysis of Optical and Mechanical Properties of Cross-Linked Azobenzene-Containing Liquid-Crystalline Polymer Films

机译:同时分析交联含偶氮苯的液晶聚合物薄膜的光学和机械性能

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摘要

The photomechanical behavior of cross-linked azobenzene-containing liquid-crystalline polymer films was investigated by means of simultaneous measurement of their optical and mechanical properties. The connection between photoisomerization of the azobenzene moieties, photoinduced change in molecular alignment, photoinduced stress generation, and macroscopic bending was analyzed. Upon UV irradiation, the films exhibited bending due to gradient in cis-azobenzene content, and subsequent unbending when cis-azobenzene content became uniform throughout the film. The maximum photo-induced stress was generated in the same time scale as the time required to reach photostationary state in the cis-azobenzene concentration. The maximum values of photogenerated stress strongly depended on the crosslinker concentration, even if the azobenzene concentration and the cis-azobenzene content in the photostationary state were similar for all the polymer films. The stress is connected to the initial Young's modulus and also to the photoinduced change in birefringence of the polymer films. In addition, a significant photoinduced decrease in Young's modulus was for the first time observed in cross-linked azobenzene-containing liquid-crystalline polymers, which is likely to be an important factor in dictating their photomechanical behavior.
机译:通过同时测量其光学和机械性能,研究了含交联偶氮苯的液晶聚合物薄膜的光机械行为。分析了偶氮苯部分的光异构化,光致分子排列变化,光致应力产生和宏观弯曲之间的关系。在UV辐射下,由于顺式偶氮苯含量的梯度,膜表现出弯曲,并且当顺式偶氮苯含量在整个膜中变得均匀时随后弯曲。在与在顺式偶氮苯浓度下达到光平稳状态所需的时间相同的时间范围内,产生了最大的光诱导应力。即使在所有的聚合物薄膜中,光静止状态下的偶氮苯浓度和顺-偶氮苯含量相似,光生应力的最大值也强烈取决于交联剂的浓度。应力与初始杨氏模量以及聚合物膜的双折射的光致变化有关。此外,首次在含交联偶氮苯的液晶聚合物中首次观察到光致杨氏模量的显着下降,这很可能是决定其光机械行为的重要因素。

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