Highly Elastic, Bioresorbable Polymeric Materials for Stretchable, Transient Electronic Systems

  • Shin, Jeong-Woong
  • Kim, Dong-Je
  • Jang, Tae-Min
  • Han, Won Bae
  • Lee, Joong Hoon
  • ... Hwang, Suk-Won
  • 외 8명
Citations

WEB OF SCIENCE

37
Citations

SCOPUS

33

초록

Substrates or encapsulants in soft and stretchable for-mats are key components for transient, bioresorbable electronic systems; however, elastomeric polymers with desired mechanical and biochemi-cal properties are very limited compared to non-transient counterparts. Here, we introduce a bioresorbable elastomer, poly(glycolide-co-epsilon-caprolactone) (PGCL), that contains excellent material properties including high elongation-at-break (< 1300%), resilience and toughness, and tunable dissolution behaviors. Exploitation of PGCLs as polymer matrices, in combination with conducing polymers, yields stretchable, conductive composites for degradable interconnects, sensors, and actuators, which can reliably function under external strains. Integration of device components with wireless modules demonstrates elastic, transient electronic suture system with on-demand drug delivery for rapid recovery of post-surgical wounds in soft, time-dynamic tissues.

키워드

Biodegradable elastomerConductive polymer compositesBiomedical deviceTransient electronicsHIGH-PERFORMANCEDEVICESPOLY(GLYCOLIDE-CO-CAPROLACTONE)DEGRADATIONELASTOMERSCOPOLYMERSWIRELESSTENSILESUTURESILK
제목
Highly Elastic, Bioresorbable Polymeric Materials for Stretchable, Transient Electronic Systems
저자
Shin, Jeong-WoongKim, Dong-JeJang, Tae-MinHan, Won BaeLee, Joong HoonKo, Gwan-JinYang, Seung MinRajaram, KavetiHan, SungkeunKang, HeeseokLim, Jun HyeonEom, Chan-HwiBandodkar, Amay J.Hwang, Suk-Won
DOI
10.1007/s40820-023-01268-2
발행일
2024-12
유형
Article
저널명
Nano-Micro Letters
16
1