详细信息

A mussel-inspired semi-interpenetrating structure hydrogel with superior stretchability, self-adhesive properties, and pH sensitivity for smart wearable electronics  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:A mussel-inspired semi-interpenetrating structure hydrogel with superior stretchability, self-adhesive properties, and pH sensitivity for smart wearable electronics

作者:Xing, Lu[1];Song, Yaoting[1];Zou, Xinquan[1];Tan, Haojie[1];Yan, Jiani[1];Wang, Jikui[1]

机构:[1]East China Univ Sci & Technol, Sch Mat Sci & Engn, Shanghai 200030, Peoples R China

年份:2023

卷号:11

期号:39

起止页码:13376

外文期刊名:JOURNAL OF MATERIALS CHEMISTRY C

收录:;EI(收录号:20233914811249);WOS:【SCI-EXPANDED(收录号:WOS:001079512500001)】;

语种:英文

外文关键词:Adhesives - Carbon nanotubes - Flexible electronics - Molluscs - pH sensors - Wearable sensors

摘要:Conductive hydrogel-based flexible sensors have garnered significant interest in the realm of smart wearable electronics. Nevertheless, the development of multifunctional hydrogels continues to be an essential challenge, given that conventional hydrogels typically exhibit singular functionality and frail mechanical properties. In this study, inspired by mussels, a multifunctional conductive hydrogel with superior stretchability, adhesion, pH sensitivity, and antibacterial activation was prepared with polydopamine (PDA)-coated carbon nanotubes (CNTs) doped. Particularly, a semi-interpenetrating network structure with multiple cross-linking sites was constructed, resulting in the hydrogel with a super-stretching ability (1904%) and fatigue resistance. The PDA-CNTs in the system not only imparted self-adhesive properties to the hydrogel but also facilitated efficient ion and electron transfer with the synergistic effect of Al3+, thereby enhancing the sensitivity (GF = 3.81) and cycling stability. The flexible sensor based on this hydrogel could be applicable to detect various human activities and also exhibited huge potential in the field of information sensing and transmission. Multifunctional conductive hydrogel-based flexible sensors have garnered significant interest in the realm of smart wearable electronics.

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