韧性
氢键
聚合物
生物塑料
弹性体
高分子科学
氢
催化作用
材料科学
高分子化学
化学工程
增韧
聚乳酸
共聚物
纳米技术
面子(社会学概念)
可生物降解聚合物
嫁接
复合材料
天然聚合物
催化效率
作者
Lu Wan,Hongsen Zhu,Fu Xu,Yufeng Duan,Xuejiao Liang,Qiong Luo,Qiang Xu,Zhaolei Li,Qiuhong Zhang,Xudong Jia
出处
期刊:Macromolecules
[American Chemical Society]
日期:2025-10-14
卷期号:58 (20): 11282-11290
被引量:3
标识
DOI:10.1021/acs.macromol.5c01076
摘要
Citrate-based biodegradable elastomers face significant practical limitations due to their inherently poor mechanical properties. While existing enhancement strategies can partially address this issue, they often rely on toxic catalysts or damage inherent material advantages. Here, we establish strong hydrogen bonds in the cross-linked networks of citrate-based polymers by a PBS impregnation method to improve their mechanical properties. Based on the strategy, poly(1,8-octanediol- co -citrate) can increase its toughness by 109-fold, transforming it into a bioplastic with mechanical characteristics superior to those of polylactic acid. Moreover, the strategy demonstrates universal applicability across the family of citrate-based polymers while preserving intrinsic specialties and advantages.
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