JOURNAL ARTICLE

Poly(acrylic acid)‐chitosan @ tannic acid double‐network self‐healing hydrogel based on ionic coordination

Tingting LiXiangming HuQingsong ZhangYanyun ZhaoPeng WangXin WangBotao QinWei Lu

Year: 2020 Journal:   Polymers for Advanced Technologies Vol: 31 (7)Pages: 1648-1660   Publisher: Wiley

Abstract

In this work, poly(acrylic) acid‐chitosan @ tannic acid‐aluminum ion (PAA‐CS@TA‐Al 3+ ) double‐network hydrogel was prepared via prefabrication, blending method, and Al 3+ immersion method. The interaction between chitosan and tannic acid (CS@TA) was analyzed using Fourier transfer infrared spectra and UV‐Vis spectra. The UV‐Vis spectrum was also used to confirm the formation of ionic coordination in the gel. Then, the possible coordination modes were studied and analyzed. The microscopic pore structure and macroscopic strain behavior of the gel were analyzed using SEM and tensile testing, respectively, which verified that the tensile strength (≈32 KPa) and elongation at break (≈1700%) of the gel primarily resulted from its crosslinking structure. In addition, the gel also demonstrated a good self‐healing performance with recovery ≈92.2% at 60 minutes. Hence, the proposed novel self‐healing gel can provide inspiration for the preparation of future self‐healing gels.

Keywords:
Tannic acid Chitosan Materials science Ultimate tensile strength Acrylic acid Ionic bonding Self-healing hydrogels Self-healing Chemical engineering Nuclear chemistry Polymer chemistry Composite material Ion Polymer Chemistry Organic chemistry

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2.32
FWCI (Field Weighted Citation Impact)
49
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0.85
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Citation History

Topics

Hydrogels: synthesis, properties, applications
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Medicine
Polymer composites and self-healing
Physical Sciences →  Materials Science →  Polymers and Plastics
Nanocomposite Films for Food Packaging
Physical Sciences →  Materials Science →  Biomaterials

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