| Literature DB >> 35200470 |
Haiyue Miao1,2, Weiju Hao1, Hongtao Liu2, Yiyang Liu2, Xiaobin Fu2, Hailong Huang2, Min Ge2, Yuan Qian2.
Abstract
Based on the good self-healing ability to repair mechanical damage, self-healing hydrogels have aroused great interest and been extensively applied as functional materials. However, when partial failure of hydrogels caused by breaking or dryness occurs, leading to recycling problems, self-healing hydrogels cannot solve the mentioned defects and have to be abandoned. In this work, a novel recyclable and self-healing natural polymer hydrogel (Chitosan/polymethylacrylic acid-: CMA) was prepared. The CMA hydrogel not only exhibited controlled mechanical properties from 26 kPa to 125 kPa with tensile strain from 1357% to 3012%, but also had good water retaining property, stability and fast self-healing properties in 1 min. More importantly, the CMA hydrogel displayed attractive powder self-healing performance. After drying-powdering treatment, the mentioned abandoned hydrogels could easily rebuild their frame structure to recover their original state and performance in 1 min only by adding a small amount of water, which could significantly prolong their service life. These advantages guarantee the hydrogel can effectively defend against reversible mechanical damage, water loss and partial hydrogel failure, suggesting great potential applications as a recyclable functional hydrogel for biomaterials and electronic materials.Entities:
Keywords: flexibility; hydrogels; recyclability; self-healing
Year: 2022 PMID: 35200470 PMCID: PMC8871090 DOI: 10.3390/gels8020089
Source DB: PubMed Journal: Gels ISSN: 2310-2861
Figure 1(A) Preparation of CMA hydrogels. (B) FTIR spectra of CS, MA and CMA-3 hydrogels. (C) XRD pattern of CMA-3 hydrogel. (D) SEM image of CMA-3 hydrogel.
Figure 2Mechanical properties of CMA hydrogels: (A) Tensile strain curve at 10 mm min−1. (B) Compressive strain curve at 5 mm min−1. (C) Stretching–releasing cycles. Photographs of CMA-3 hydrogel exhibiting excellent stretching and bending flexibility (D,E).
Figure 3(A) Photographs of the self-healing abilities of CMA-3 hydrogel (hydrogel disks colored by rhodamine 6G and rhodamine B). Photographs of CMA-3 hydrogel exhibiting excellent stretching and bending flexibility (B,C).
Figure 4(A) Photographs of powder self-healing abilities of CMA-3 hydrogel. (B) Photographs of CMA-3 hydrogel exhibiting excellent stretching flexibility. (C) Photographs of CMA-3 hydrogel repairing partially missing hydrogel.