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Pluralizing actuation behavior of 3D printable liquid crystal elastomers via polymerization sequence control

  • Wenjun Peng
  • , Pengxin Zhao
  • , Xiaorui Zhou
  • , Xin Liang
  • , Xianming Zhang
  • , Binjie Jin
  • , Guancong Chen*
  • , Qian Zhao
  • , Tao Xie*
  • *此作品的通讯作者
  • Zhejiang University of Science and Technology
  • Zhejiang Provincial Innovation Center of Advanced Textile Technology
  • Zhejiang University
  • South China University of Technology

科研成果: 期刊稿件文章同行评审

摘要

Mechanical stretching is commonly used for mesogen alignment which is essential for the muscle-like actuations of liquid crystal elastomers (LCEs). Despite the simplicity of the method, the mesogens are typically aligned in the stretching direction, limiting exclusively the LCE to an actuation mode of cooling-induced elongation. Here, we design an interpenetrating double network consisting of an LCE network and an elastomer network, with one polymerized network stretched before the polymerization of the other network. Depending on the polymerization sequence of the two networks, the double network shows two opposite actuation modes, namely, the conventional cooling-induced elongation or an unusual cooling-induced contraction. Strategic integration of the two opposite behaviors into the same LCE leads to sophisticated actuation difficult to achieve with a conventional LCE design. Coupled with 3D printing, geometrically complexed LCEs with diverse multimodal four-dimensional actuation behaviors are illustrated. Our work expands the design scope of LCE actuators and their potential device applications.

源语言英语
文章编号adp4814
期刊Science Advances
10
32
DOI
出版状态已出版 - 8月 2024
已对外发布

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