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Soft Actuators of Liquid Crystal Polymers Fueled by Light from Ultraviolet to Near Infrared

期刊

ADVANCED OPTICAL MATERIALS
卷 9, 期 7, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adom.202001743

关键词

actuators; liquid crystal polymers; photochemical phase transition; photodeformation; photothermal effect

资金

  1. National Natural Science Foundation of China [21734003, 51927805, 51721002]
  2. National Key R&D Program of China [2016YFA0202902, 2017YFA0701302]
  3. Innovation Program of Shanghai Municipal Education Commission [2017-01-07-00-07-E00027]

向作者/读者索取更多资源

Photodeformable liquid crystal polymers (LCPs) are intelligent polymeric materials that can convert light energy into mechanical actuation, bringing new functionalities and innovations in the fields of soft robotics, solar-energy harvesting, and microfluidics. The focus is on light-fueled LCPs and their soft actuators, with an emphasis on different LC alignments and the progress of light-fueled soft actuators.
Photodeformable liquid crystal polymers (LCPs) are a typical representative of shape-changing systems capable of remotely converting light energy into mechanical actuation. Such smart polymeric materials combining the features of polymers and liquid crystals (LCs) are envisioned to bring new functionality and drive innovation in the fields of soft robotics, solar-energy harvesting, and microfluidics. The photodeformable LCPs and their soft actuators fueled by light from ultraviolet to near infrared, including basic actuation as well as the primary mechanisms are focused on. The complex actuation is also highlighted with emphasis on the designed LC alignment, such as splayed, twisted, out-plane, and patterned, which bridges the gap between the shape change and practical applications. Special attention is devoted to the progress of light-fueled soft actuators, which are classified into different categories and comprehensively summarized in the aspects of materials, alignment, mechanisms, and light stimuli. An outlook on future challenges and limitations in the light-fueled soft actuators are discussed at the end of this review.

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