立体规律的形聚合物的立体复合:从无形变为半晶聚合物,具有单个立体中心反转
Yanay Popowski1, Yiye Lu2, Geoffrey W Coates2
1Department of Chemistry, Washington University in St. Louis, One Brookings Hall, Campus Box 1134, St. Louis, Missouri 63130-4899, United States.
Journal of the American Chemical Society
|April 27, 2022
概括
研究人员在PLA以外的可生物降解聚合物中探索了立体复合. 环氧化物和无水化物的特定合物产生了具有增强热性质的半晶体聚合物,证明了先进的聚合物材料的新途径.
科学领域:
- 聚合物化学
- 材料科学
- 立体化学
背景情况:
- 立体复合通过性聚合物链的联合结晶来增强聚合物的特性.
- 除了PLA,生物降解的聚合物固态复合物还没有得到充分的研究.
- 聚合物微结构与立体复合之间的联系需要澄清,特别是在性共聚物中.
研究的目的:
- 研究新型生物降解聚合物的立体复合.
- 探索性构件组合对聚合物微观结构和特性的影响.
- 通过立体复合开发具有增强热稳定的半晶共聚物.
主要方法:
- 对于非对称的性无水化物 (CPCA) 的反体分辨率.
- 金属催化环开放共聚化 (ROCOP) 用于从各种性环氧化物和无水化物中制备聚合物.
- 通过混合等分量聚合物的立体复合物的制备.
主要成果:
- 环氧化物和无水化物单体的特殊合并诱导了半结晶性.
- 单个立体中心反转改变了共聚物晶体性,从无形变为半晶体.
- 立体复合体呈现出较高的化温度 (大约 与纯相比,它们的度高出20°C.
- 优化的立体复合体实现了238°C的高温度.
结论:
- 通过ROCOP实现半晶体可生物降解聚合物,在单体构件中进行化选择至关重要.
- 这些新型共聚物的立体复合显著提高了热性能.
- 这项工作为设计具有量身定制的微结构的高性能生物降解聚合物提供了新策略.
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