Liquid crystalline elastomer actuators with dynamic covalent bonding: Synthesis, alignment, reprogrammability, and self-healing

Citations

WEB OF SCIENCE

26
Citations

SCOPUS

30

초록

Liquid crystalline elastomers (LCEs) have demonstrated tremendous potential in applications such as soft robotics, biomedical materials, electronics, sensors, and biomimetic systems. The physical properties of LCEs are controlled by the degree of crosslinking, nature of the mesogens, and mesogen orientation in the LCE network structure. A wide range of dynamic covalent bonds (DCBs) capable of dynamic bond exchange reactions (DBERs) have been introduced into LCE structures to obtain intelligent materials in recent decades. In this review article, we discuss the molecular constitution, macrostructure, morphing mechanism, recent advances in LCEs with dynamic covalent bonds, the influence of DCBs on self-healing, reprogramming and reprocessing properties of LCE actuators, and challenges and opportunities in incorporating dynamic chemistry in the field of LCE actuators.

키워드

Liquid crystalline elastomer; Dynamic covalent bonding; Actuators; Self-healing; Reprogrammability; POLYMER NETWORKS; VISIBLE-LIGHT; MECHANICAL-PROPERTIES; ARTIFICIAL MUSCLES; EPOXY NETWORKS; POLYURETHANE; SOFT; BEHAVIOR; MONODOMAIN; EXCHANGE
제목
Liquid crystalline elastomer actuators with dynamic covalent bonding: Synthesis, alignment, reprogrammability, and self-healing
저자
Das, Gautam; Park, Soo-Young
DOI
10.1016/j.cossms.2023.101076
발행일
2023-06
유형
Review
저널명
Current Opinion in Solid State and Materials Science
권
27
호
3