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Preparation of Hydroxy-PAAm Hydrogels for Decoupling the Effects of Mechanotransduction Cues
Published on: August 28, 2014
Silicone-Enhanced PAA Supramolecular Hydrogels for High-Toughness Strain Sensors
Xiaolei Guo1,2, Yihang Yao1, Tianyu Xu1
1School of Materials Science and Engineering, Shandong University, Jinan 250061, China.
None:
Hydrogels have shown significant potential in the field of flexible electronics; however, their practical application remains limited due to mechanical performance constraints. Inspired by the supramolecular interactions observed in nature, this study designs a water-soluble PhAPSiX polymer and introduces it into an aqueous acrylic acid solution. During in situ polymerization, a hydrogel network is formed through the self-assembly of supramolecular interactions, resulting in the fabrication of a PAA/PhAPSi70 hydrogel with both high strength (2.29 MPa) and high toughness (4.47 MJ/m3). The strain sensors fabricated from this hydrogel demonstrate excellent performance, including high sensitivity (GF = 2.91), fast response time (893 ms), and short recovery time (997 ms), enabling effective monitoring of human motion. Additionally, the PAA/PhAPSi70 hydrogel exhibits exceptional shape adaptability, allowing for the preparation of sensor devices with specific shapes based on demand. Therefore, the PAA/PhAPSi70 hydrogel holds great promise for the next generation of flexible electronics and displays broad application prospects.
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