Light-Responsive Actuator of Azobenzene-Containing Main-Chain Liquid Crystal Elastomers with Allyl Sulfide Dynamic Exchangeable Linkages

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초록

Herein, a light-responsive and light-induced bond-exchange-reaction (BER)-capable actuator of the monodomain liquid crystal elastomer (xMLCE(azo)), developed using main-chain mesogenic oligomers containing azobenzene and allyl sulfide linkages, is investigated. Large quantities of the azobenzene and allyl dithiol linkages are incorporated into the main-chain mesogenic oligomer prepared via thiol-acrylate Michael addition polymerization (TAMAP). ThexMLCE(azo) film is generated via visible-light-induced BER of the drawn polydomain xMLCE(azo)(xPLCE(azo)) film prepared via TAMAP of tetrathiol cross-linkers and diacrylate-terminated mesogenic oligomers. The xMLCE(azo) film exhibits large length actuation (38%) through the photothermal effect, along with excellent self-healing and reprogramming properties, under ultraviolet (UV) light irradiation. UV light induced BER of the xMLCE(azo) film is used to develop complex-shaped actuators with a bilayer film, containing the xMLCE(azo) and xMLCE(azo) films, which are bonded by the UV light induced BER without glue. The individual arm of the complex eight-arm flower is remotely actuated under UV light irradiation, and a circular band is rolled under blue laser light irradiation, demonstrating the local remote-controlled actuation and fuel-free motion of the motile soft robot using light irradiation, respectively. Thus, the xMLCE(azo) film can be expanded to other interesting applications requiring reprogrammable, self-healing, reprocessable, patternable, and remote-controlled light-triggered elastic, rubber-like actuators.

키워드

liquid crystal elastomer; azobenzene; dynamicexchange reaction; actuator; soft robot; POLYMER; MONODOMAIN
제목
Light-Responsive Actuator of Azobenzene-Containing Main-Chain Liquid Crystal Elastomers with Allyl Sulfide Dynamic Exchangeable Linkages
저자
Jeong, You-Jeong; Park, Soo-Young
DOI
10.1021/acsami.3c17068
발행일
2024-01-03
유형
Article
저널명
ACS Applied Materials & Interfaces
권
16
호
2
페이지
2788 ~ 2801