聚氨酯
白桦素
材料科学
亚胺
香兰素
韧性
化学工程
极限抗拉强度
热分解
复合材料
化学
有机化学
催化作用
工程类
作者
Xiaobo Xu,Xiaozhen Ma,Minghui Cui,Honglong Zhao,Nathan E. Stott,Jin Zhu,Ning Yan,Jing Chen
标识
DOI:10.1016/j.cej.2023.147823
摘要
In this study, a novel bio-based diol containing imine dynamic bonds (Vanp2) were synthesized using vanillin and bio-based 1,5-pentanediamine. Vanp2 was then introduced into the cross-linking network of betulin-based polyurethanes to obtain betulin-based polyurethanes containing covalent adaptive networks (CANs). Imine dynamic bonds within CAN endowed these betulin-based polyurethanes with self-healing, re-processability, degradability, and editable shape memory functionalities. Meanwhile, the mechanical and thermal properties of these fully bio-based polyurethane materials were characterized. The maximum tensile strength reached 9.5 MPa, while the maximum strain at break was 248 % and the maximum toughness was 13.2 MJ/m3. Thermal decomposition temperature was greater than 300 °C. Since the imine structure could be dissociated under acidic conditions, these polyurethanes could be rapidly degraded in a mixed acid solution at 50 °C in 4 h. This study demonstrated a strategy for synthesizing betulin-based polyurethane elastomers containing CAN using only bio-based feedstock.
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