Highly Sensitive Strain Sensor Based on a Stretchable and Conductive Poly(vinyl alcohol)/Phytic Acid/NH 2 -POSS Hydrogel with a 3D Microporous Structure

Conductive hydrogel-based wearable strain sensors with tough, stretchable, self-recoverable, and highly sensitive properties are highly demanded for applications in electronic skin and human-machine interface. However, currently, hydrogel-based strain sensors put forward higher requirements on their...

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Veröffentlicht in:ACS applied materials & interfaces 2020-06, Vol.12 (23), p.26496-26508
Hauptverfasser: Shao, Liang, Li, Ying, Ma, Zhonglei, Bai, Yang, Wang, Jie, Zeng, Peiyun, Gong, Pin, Shi, Fuxiong, Ji, Zhanyou, Qiao, Yang, Xu, Ran, Xu, Juanjuan, Zhang, Guohong, Wang, Caiyun, Ma, Jianzhong
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Sprache:eng
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Zusammenfassung:Conductive hydrogel-based wearable strain sensors with tough, stretchable, self-recoverable, and highly sensitive properties are highly demanded for applications in electronic skin and human-machine interface. However, currently, hydrogel-based strain sensors put forward higher requirements on their biocompatibility, mechanical strength, and sensitivity. Herein, we report a poly(vinyl alcohol)/phytic acid/amino-polyhedral oligomeric silsesquioxane (PVA/PA/NH -POSS) conductive composite hydrogel prepared via a facile freeze-thaw cycle method. Within this hydrogel, PA acts as a cross-linking agent and ionizes hydrogen ions to endow the material with ionic conductivity, while NH -POSS acts as a second cross-linking agent by increasing the cross-linking density of the three-dimensional network structure. The effect of the content of NH -POSS is investigated, and the composite hydrogel with 2 wt % NH -POSS displays a uniform and dense three-dimensional (3D) network microporous structure, high conductivity of 2.41 S/m, and tensile strength and elongation at break of 361 kPa and 363%, respectively. This hydrogel is biocompatible and has demonstrated the application as a strain sensor monitoring different human movements. The assembled sensor is stretchable, self-recoverable, and highly sensitive with fast response time (220 ms) and excellent sensitivity (GF = 3.44).
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.0c07717