Rapid Self-Healing Hydrogel with Ultralow Electrical Hysteresis for Wearable Sensing

  • Hong, Seokkyoon
  • Park, Taewoong
  • Lee, Junsang
  • Ji, Yuhyun
  • Walsh, Julia
  • ... Kim, Dong Rip
  • 외 8명
Citations

WEB OF SCIENCE

34
Citations

SCOPUS

33

초록

Self-healing hydrogels are in high demand for wearable sensing applications due to their remarkable deformability, high ionic and electrical conductivity, self-adhesiveness to human skin, as well as resilience to both mechanical and electrical damage. However, these hydrogels face challenges such as delayed healing times and unavoidable electrical hysteresis, which limit their practical effectiveness. Here, we introduce a self-healing hydrogel that exhibits exceptionally rapid healing with a recovery time of less than 0.12 s and an ultralow electrical hysteresis of less than 0.64% under cyclic strains of up to 500%. This hydrogel strikes an ideal balance, without notable trade-offs, between properties such as softness, deformability, ionic and electrical conductivity, self-adhesiveness, response and recovery times, durability, overshoot behavior, and resistance to nonaxial deformations such as twisting, bending, and pressing. Owing to this unique combination of features, the hydrogel is highly suitable for long-term, durable use in wearable sensing applications, including monitoring body movements and electrophysiological activities on the skin.

키워드

electronic skinintermolecular interactionsself-healing hydrogelsstrain gaugeswearable sensorsSTRAIN SENSORSSOFTADHESIVE
제목
Rapid Self-Healing Hydrogel with Ultralow Electrical Hysteresis for Wearable Sensing
저자
Hong, SeokkyoonPark, TaewoongLee, JunsangJi, YuhyunWalsh, JuliaYu, TianhaoPark, Jae YoungLim, JongcheonBenito Alston, ClaudiaSolorio, LuisLee, HyowonKim, Young L.Kim, Dong RipLee, Chi Hwan
DOI
10.1021/acssensors.3c01835
발행일
2024-02
유형
Article in press
저널명
ACS Sensors
9
2
페이지
662 ~ 673