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Dynamic mussel-inspired chitin nanocomposite hydrogels for wearable strain sensors

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journal contribution
posted on 2020-01-01, 00:00 authored by Pejman Heidarian, Abbas KouzaniAbbas Kouzani, Akif KaynakAkif Kaynak, Ali ZolfagharianAli Zolfagharian, Hossein Yousefi
It is an ongoing challenge to fabricate an electroconductive and tough hydrogel with autonomous self-healing and self-recovery (SELF) for wearable strain sensors. Current electroconductive hydrogels often show a trade-off between static crosslinks for mechanical strength and dynamic crosslinks for SELF properties. In this work, a facile procedure was developed to synthesize a dynamic electroconductive hydrogel with excellent SELF and mechanical properties from starch/polyacrylic acid (St/PAA) by simply loading ferric ions (Fe3+) and tannic acid-coated chitin nanofibers (TA-ChNFs) into the hydrogel network. Based on our findings, the highest toughness was observed for the 1 wt.% TA-ChNF-reinforced hydrogel (1.43 MJ/m3), which is 10.5-fold higher than the unreinforced counterpart. Moreover, the 1 wt.% TA-ChNF-reinforced hydrogel showed the highest resistance against crack propagation and a 96.5% healing efficiency after 40 min. Therefore, it was chosen as the optimized hydrogel to pursue the remaining experiments. Due to its unique SELF performance, network stability, superior mechanical, and self-adhesiveness properties, this hydrogel demonstrates potential for applications in self-wearable strain sensors.

History

Journal

Polymers

Volume

12

Issue

6

Pagination

1 - 15

Publisher

MDPI

Location

Basel, Switzerland

ISSN

2073-4360

eISSN

2073-4360

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

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