Sweat-resistant silk fibroin-based double network hydrogel adhesives

Jilei Wang, Nan Zhang, Yurong Tan, Fanfan Fu, Gengxin Liu, Yin Fang, Xin-Xing Zhang, Minsu Liu, Yuan Cheng, Jing Yu

Research output: Contribution to journalArticleResearchpeer-review

31 Citations (Scopus)

Abstract

The adhesion between flexible epidermal sensors and human skin is essential for maintaining the stable functionality of the sensors. However, it is still challenging for epidermal electronic devices to achieve durable adhesion to the surface of the skin, especially under sweaty or humid conditions. Here, we report a silk fibroin-polyacrylamide (SF-PAAm) double network (DN) hydrogel adhesive with excellent biocompatibility, strong and durable adhesion on wet surfaces, and tunable adhesive properties. The hydrophilic PAAm network greatly improves the water retention capability of the DN hydrogel and reduces the β-sheet crystalline content of SF, leading to excellent adhesive properties of the hydrogel across a wide range of humidity. The SF-PAAm DN hydrogel adhesive can be readily integrated with different epidermal sensor arrays and performs very well in real-time on-body sweat sensing. The SF-PAAm DN hydrogels have great potential for application in various epidermal healthcare sensors as well as medical adhesives for other medical applications.

Original languageEnglish
Pages (from-to)21945-21953
Number of pages9
JournalACS Applied Materials & Interfaces
Volume14
Issue number19
DOIs
Publication statusPublished - 2022

Keywords

  • adhesive
  • double network hydrogel
  • hydrogen bonds
  • silk fibroin
  • sweat-resistant

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