Photomobile films based on liquid crystal polymer-carbon black composites

F. Loffredo, Anna De Girolamo Del Mauro, F. Villani, M. F. Caso, T. Fasolino, R. Miscioscia, A. Vestri, D. Sagnelli, Amalia D'Avino, L. Petti, G. Nenna
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Abstract

Films based on a composite of a liquid crystal polymer (LC-POL) with acrylic backbone and carbon black (CB) were manufactured and characterized to develop a new smart material able to move under light. In detail, the effect of 0.1wt% of CB, a high absorption and thermal conductive filler, on morphological, optical and photomobile properties was investigated and compared with pristine LC-POL films. To study photomobile behaviuor the films were irradiated with 457nm-laser at different powers and the responses to these stimuli were compared in terms of bending angle and response time. The work shows that the presence of CB induces photomobile properties in an inactive LC polymer matrix and the mechanical response under light is fast and reversible.
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基于液晶聚合物-炭黑复合材料的光电薄膜
制备了一种基于丙烯酸骨架和炭黑(CB)的液晶聚合物(LC-POL)复合材料的薄膜,并对其进行了表征,以开发一种能够在光下移动的新型智能材料。详细地研究了0.1wt%的高吸收率和导热填料CB对LC-POL薄膜形貌、光学和光电迁移性能的影响,并与原始LC-POL薄膜进行了比较。为了研究薄膜的光电移动行为,我们用不同功率的457nm激光照射薄膜,并比较了薄膜在这些刺激下的弯曲角度和响应时间。研究表明,CB的存在诱导了非活性LC聚合物基质的光电迁移特性,并且在光下的机械响应是快速和可逆的。
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