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Reprogramming Photoresponsive Liquid Crystalline Elastomer via Force-Directed Evaporation

  • Binjie Jin
  • , Guancong Chen
  • , Yishu Chen
  • , Chen Yang
  • , Zhan Zhu
  • , Yunhao Weng
  • , Qian Zhao
  • , Tao Xie*
  • *Corresponding author for this work
  • Zhejiang University

Research output: Contribution to journalArticlepeer-review

Abstract

Incorporating photothermal agents into thermoresponsive liquid crystalline elastomers (LCEs) offers remote and spatio-temporal control in actuation. Typically, both the light responsiveness and actuation behaviors are fixed since the agent doping and mesogen alignment are conducted before network formation. Here, we report an approach that enables programming photoresponsive LCEs after synthesis via force-directed evaporation. Different photothermal agents can be doped or removed by swelling the fully cross-linked LCEs in a specific solution, achieving the introduction and erasing of the photoresponsiveness. Moreover, the network swelling deletes the registered alignment, which allows for redefining the molecular order via re-evaporating the solvent with force imposed. This “one stone, two birds” strategy paves the way to simultaneously program/reprogram the actuation mode and responsiveness of LCEs, even in a spatio-selective manner to achieve complex actuations. Our approach is expandable to three-dimensional (3D) printed LCEs to access geometrically sophisticated shape-changing.

Original languageEnglish
Pages (from-to)16844-16852
Number of pages9
JournalACS Applied Materials and Interfaces
Volume16
Issue number13
DOIs
StatePublished - 3 Apr 2024
Externally publishedYes

Keywords

  • 3D printing
  • actuation reprogramming
  • fore-directed evaporation
  • liquid crystalline elastomer
  • photoresponsiveness
  • photothermal effect

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