聚乙烯醇
极限抗拉强度
甜菜碱
壳聚糖
氢键
化学
复合材料
复合数
材料科学
膜
粘结强度
抗菌剂
化学工程
自愈水凝胶
高分子化学
聚合物
分子
有机化学
胶粘剂
工程类
生物化学
图层(电子)
作者
Qin Ye,Shuhan Chen,Ya Zhang,Bo Ruan,Yijie Zhang,Xin‐Ke Zhang,Tao Jiang,Xiaoge Wang,Ning Ma,Fang‐Chang Tsai
标识
DOI:10.1002/mabi.202100317
摘要
The mechanical properties of artificial skins are complicated to maintain under ensuring air permeability and antimicrobial. Thus, a series of hydrophilic antimicrobial polymer networks are prepared by crosslinking chitosan and polyvinyl alcohol with the lauramidopropyl betaine and hydrogen bond organic framework (CS/PVA/LPB/2D-HOF). The mechanical performance of the control groups and the complex are systematically evaluated to attain an artificial strength skin. The CS/PVA/LPB/2D-HOF complex exhibits strong mechanical abilities than other control groups. By analyzing the IR spectra and the morphology, the synergistic effect of hydrogen bonds between molecules and cracks significantly improves the mechanical properties of the complex. Its maximum tensile strength can reach 29 MPa, and its maximum load capacity can reach 3700 g. Notably, the composite membrane also performs an excellent antimicrobial activity. In vivo and in vitro experiments show that the hybrid membrane can promote tissue regeneration and wound healing (95%). These results may open up the opportunity for future composite material investigations in the artificial skin and tissue engineering field.
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