Physical Properties of Poly(ether-thiourea)-Based Elastomer Formed by Zigzag Hydrogen Bonding and Slidable Cross-Linking

  • Seo, Sojung; 
  • Park, Jin-Woo; 
  • Kim, Dong-Gyun; 
  • Seo, Ji-Hun
Citations

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11
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10

초록

In this study, the effects of zigzag hydrogen bonding and slidable cross-linking on the design of stretchable elastomers were explored. Poly(ether-thiourea) (TU), capable of generating strong zigzag hydrogen bonds without crystallization, was introduced as the main chain in the non-cross-linked region of the developed elastomer. Consequently, the toughness of the TU-based elastomer was 14 times higher than that of elastomers formed using linear poly(ethylene glycol), despite the relatively low molecular weight of TU (∼3k). When a slidable polyrotaxane cross-linker was introduced into the TU-based elastomer, its flexibility became twice as high as that of the rigid polymer cross-linker. Moreover, the mechanical properties of the elastomer were prevented from deterioration against repeated deformation under the limited strain condition of 150%. © 2023 American Chemical Society.

키워드

SLIDE-RING GELS; FRACTURE; DENSITY; POLYMER; NETWORKS; BEHAVIOR
제목
Physical Properties of Poly(ether-thiourea)-Based Elastomer Formed by Zigzag Hydrogen Bonding and Slidable Cross-Linking
저자
Seo, Sojung; Park, Jin-Woo; Kim, Dong-Gyun; Seo, Ji-Hun
DOI
10.1021/acsmacrolett.3c00526
발행일
2023-11-21
유형
Article
저널명
ACS Macro Letters
권
12
호
11
페이지
1558 ~ 1563