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Multi-functional liquid crystal elastomer composites

  • Yuchen Wang
  • , Jiaqi Liu
  • , Shu Yang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Liquid crystal elastomers (LCEs), owing to their intrinsic anisotropic property and capability of generating programmable complex morphologies under heat, have been widely used for applications ranging from soft robotics, photonic devices, cell culture, to tissue engineering. To fulfill the applications under various circumstances, high actuation efficiency, high mechanical strength, large heat and electrical conductivity, or responses to multiple stimuli are required. Therefore, design and fabrication of LCE composites are a promising strategy to enhanced physical properties and offer additional stimuli responses to the LCEs such as light, electric, and magnetic fields. In this review, we focus on recent advances in LCE composites, where LCEs are defined as anisotropic elastomeric materials in a broader context. Classic LCE composites with metallic nanoparticles, magnetic particles, liquid metal, carbon nanotubes, graphene and its derivative, and carbon black, and LCE composites from cellulose nanocrystals within the polymer network where cellulose can provide the unique liquid crystal anisotropy will be discussed. We conclude with the challenges and future research opportunities. © 2022 Author(s).
Original languageEnglish
Article number011301
JournalApplied Physics Reviews
Volume9
Issue number1
Online published3 Jan 2022
DOIs
Publication statusPublished - Mar 2022
Externally publishedYes

Funding

The authors acknowledge financial support from National Science Foundation (NSF) through the University of Pennsylvania Materials Research Science and Engineering Center (MRSEC), No. DMR-1720530, DMR/Polymer program, No. DMR-210484, and Future Eco Manufacturing Research Grant (FMRG), No. CMMI 2037097.

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