| Literature DB >> 34761522 |
Zeyu Zhang1, Tingrui Lin2, Shuangxiao Li3, Xibang Chen4, Xueyan Que3, Lang Sheng3, Yang Hu3, Jing Peng3, Huiling Ma1, Jiuqiang Li3, Wenjuan Zhang1, Maolin Zhai3.
Abstract
The double network (DN) hydrogel has attracted great attention due to its wide applications in daily life. However, synthesis DN hydrogel with excellent mechanical properties is still a big challenge. Here, polyacrylamide/copper-alginate double network (PAM/Cu-alg DN) hydrogel electrolyte is successfully synthesized by radiation-induced polymerization and cross-linking process of acrylamide with N, N'-methylene-bis-acrylamide and subsequent cupric ion (Cu2+ ) crosslinking of alginate. The content of sodium alginate, absorbed dose, and the concentration of Cu2+ are investigated in detail for improving the overall properties of PAM/Cu-alg DN hydrogel electrolyte. The PAM/Cu-alg DN hydrogel electrolyte synthesizes by radiation technique and Cu2+ crosslinking shows superior mechanical properties with a tensile strength of 2.25 ± 0.02 MPa, excellent energy dissipation mechanism, and the high ionic conductivity of 4.08 ± 0.17 mS cm-1 . PAM/Cu-alg DN hydrogel is characterized with attenuated total reflection Fourier transform infrared spectroscopy, thermogravimetric analysis, scanning electron microscopy, and X-ray photoelectron spectroscopy analyses and the reason for the improvement of mechanical properties is illustrated. Furthermore, PAM/Cu-alg DN hydrogel electrolyte exhibits excellent strain-sensitivity, cyclic stability, and durability. This work paves for the new way for the preparation of DN hydrogel electrolytes with excellent properties.Entities:
Keywords: cupric ion crosslinking; mechanical properties; polyacrylamide; radiation synthesis; sodium alginate; strain-sensitivity
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Year: 2021 PMID: 34761522 DOI: 10.1002/mabi.202100361
Source DB: PubMed Journal: Macromol Biosci ISSN: 1616-5187 Impact factor: 4.979