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Self-adhesive, conductive, and multifunctional hybrid hydrogel for flexible/wearable electronics based on triboelectric and piezoresistive sensor.
Qiu, Chuang; He, Ming; Xu, Shi-Feng; Ali, Aasi Mohammad; Shen, Lin; Wang, Jia-Shi.
Afiliação
  • Qiu C; Department of Orthopedics, Shengjing Hospital of China Medical University, Shenyang, Liaoning 110004, China.
  • He M; Department of Orthopedics, Shengjing Hospital of China Medical University, Shenyang, Liaoning 110004, China.
  • Xu SF; College of Science, Shenyang Aerospace University, Shenyang, Liaoning 110136, China.
  • Ali AM; Department of Orthopedics, Shengjing Hospital of China Medical University, Shenyang, Liaoning 110004, China.
  • Shen L; Department of Orthopedics, Shengjing Hospital of China Medical University, Shenyang, Liaoning 110004, China. Electronic address: shengjingssss@163.com.
  • Wang JS; Department of Orthopedics, Shengjing Hospital of China Medical University, Shenyang, Liaoning 110004, China. Electronic address: wangjiashi2018@163.com.
Int J Biol Macromol ; 269(Pt 2): 131825, 2024 Jun.
Article em En | MEDLINE | ID: mdl-38679271
ABSTRACT
Flexible electronics are highly developed nowadays in human-machine interfaces (HMI). However, challenges such as lack of flexibility, conductivity, and versatility always greatly hindered flexible electronics applications. In this work, a multifunctional hybrid hydrogel (H-hydrogel) was prepared by combining two kinds of 1D polymer chains (polyacrylamide and polydopamine) and two kinds of 2D nanosheets (Ti3C2Tx MXene and graphene oxide nanosheets) as quadruple crosslinkers. The introduced Ti3C2Tx MXene and graphene oxide nanosheets are bonded with the PAM and PDA polymer chains by hydrogen bonds. This unique crosslinking and stable structure endow the H-hydrogel with advantages such as good flexibility, electrical conductivity, self-adhesion, and mechanical robustness. The two kinds of nanosheets not only improved the mechanical strength and conductivity of the H-hydrogel, but also helped to form the double electric layers (DELs) between the nanosheets and the bulk-free water phase inside the H-hydrogel. When utilized as the electrode of a triboelectric nanogenerator (TENG), high electrical output performances were realized due to the dynamic balance of the DELs between the nanosheets and the H-hydrogel's inside water molecules. Moreover, flexible sensors, including triboelectric, and strain/pressure sensors, were achieved for human motion detection at low frequencies. This hydrogel is promising for HMI and e-skin.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Hidrogéis / Condutividade Elétrica / Dispositivos Eletrônicos Vestíveis / Grafite Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Hidrogéis / Condutividade Elétrica / Dispositivos Eletrônicos Vestíveis / Grafite Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article