Preparation and characterization of lignin-containing self-healing polyurethane elastomers with hydrogen and disulfide bonds

木质素 氢键 弹性体 二硫键 聚氨酯 表征(材料科学) 高分子化学 高分子科学 化学 有机化学 材料科学 生物化学 纳米技术 分子
作者
Nian X. Sun,Zhaofeng Wang,Xi Ma,Kaixin Zhang,Zeyu Wang,Zhenyu Guo,Yun Chen,Lihao Sun,Lu Wang,Yang Liu,Mingwei Di
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:174: 114178-114178 被引量:80
标识
DOI:10.1016/j.indcrop.2021.114178
摘要

Inspired by biological self-healing phenomena , the preparation of lignin-containing polymer elastomers with a self-healing ability has become the focus of attention. However, the mutually exclusive conflict for the mechanical and self-healing properties of polymer elastomers makes it challenging to optimize both simultaneously. Herein, a facile strategy to prepare lignin-containing polyurethane elastomers based on hydrogen and disulfide bonds with good self-healing properties (> 93%) and tensile strength (10.77 MPa) is reported. The effect of the role of corn stover lignin as a reaction r a w material and chain extender, as well as the order of introduction of disulfide bonds on the properties of polyurethane elastomers are explored. The self-healing mechanism for dynamic hydrogen and disulfide bonds in lignin-containing polyurethane elastomers is further elaborated. Due to the aromatic ring structure of lignin and its hydrogen bond interaction with the matrix, the tensile strength of the polyurethane elastomer is improved while maintaining dynamic adaptability and responsiveness. At the same time, the combination of dynamic hydrogen and disulfide bonds improves the self-healing properties of lignin-containing polyurethane elastomers. This research reports a novel high-value application of lignin, which is of great significance for making full use of biomass resources. • A novelty application of corn stover lignin in elastomer. • The polyurethane elastomers were prepared with lignin as the main raw material. • The effect of S S bond introduction order on material properties was studied. • Elastomer with good self-healing ability based on hydrogen and S S bond was obtained.
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