材料科学
湿度
背景(考古学)
执行机构
聚合物
光电子学
双层
变形(气象学)
复合材料
纳米技术
膜
计算机科学
气象学
物理
人工智能
遗传学
古生物学
生物
作者
Linfeng Lan,Xuesong Yang,Baolei Tang,Xu Yu,Xiaokong Liu,Liang Li,Panče Naumov,Hongyu Zhang
出处
期刊:Angewandte Chemie
[Wiley]
日期:2022-01-28
卷期号:61 (14): e202200196-e202200196
被引量:96
标识
DOI:10.1002/anie.202200196
摘要
Abstract Reshaping of elongated organic crystals that can be used as semiconductors, waveguides or soft robotic grippers by application of force or light is now a commonplace, however mechanical response of organic crystals to changes in humidity has not been accomplished yet. Here, we report a universal approach to instigating a humidity response into elastically bendable organic crystals that elicits controllable deformation with linear response to aerial humidity while retaining their physical integrity entirely intact. Hygroresponsive bilayer elements are designed by mechanically coupling a humidity‐responsive polymer with elastic molecular crystals that have been mechanically reinforced by a polymer coating. As an illustration of the application of these cladded crystalline actuators, they are tested as active optical transducers of visible light where the position of light output can be precisely controlled by variations in aerial humidity. Within a broader context, the approach described here provides access to a vast range of mechanically robust, lightweight hybrid hygroresponsive crystalline materials.
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