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Stretchable slide-ring supramolecular hydrogel for flexible electronic devices
ChemistryCommunications Materials

Stretchable slide-ring supramolecular hydrogel for flexible electronic devices

S. Wang, Y. Chen, et al.

This groundbreaking research by Shuaipeng Wang, Yong Chen, Yonghui Sun, Yuexiu Qin, Hui Zhang, Xiaoyong Yu, and Yu Liu explores a revolutionary stretchable slide-ring supramolecular hydrogel designed for flexible electronic devices. With the ability to stretch 25.4 times its original length and rapid recovery, along with enhanced ionic conductivity from Ca²⁺ ions, this hydrogel is primed to transform wearable strain sensors for human motion monitoring.... show more
Abstract
Slide-ring materials with movable cross-links have received attention due to their excellent mechanical properties. However, due to the poor solubility of polyrotaxane and low synthesis efficiency, their applications are hindered. Here, we use hydroxypropyl-modified α-cyclodextrin (Hy-α-CD) and Acrylamide-PEG20000-Acrylamide (ACA-PEG20000-ACA) to construct a polypseudorotaxane with good water solubility. Through photo-initiated polymerization of polypseudorotaxane with acrylamide in-situ, the capped polyrotaxane was easily obtained and further cross-linked by 1,4-butanediol diglycidyl ether in sodium hydroxide solution to form a slide-ring supramolecular hydrogel. The hydrogel can be stretched to 25.4 times its original length, which recovers rapidly on unloading, and the addition of Ca²⁺ ions during crosslinking enhances ionic conductivity. The Ca²⁺-doped hydrogels are used to prepare wearable strain sensors for monitoring human motion.
Publisher
Communications Materials
Published On
Jan 20, 2022
Authors
Shuaipeng Wang, Yong Chen, Yonghui Sun, Yuexiu Qin, Hui Zhang, Xiaoyong Yu, Yu Liu
Tags
supramolecular hydrogelflexible electronicsstretchable materialsionic conductivitywearable sensorshuman motion monitoring
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