羟基烷酸
结晶度
韧性
材料科学
热稳定性
脆性
生物降解
降级(电信)
聚合物
高分子科学
复合材料
化学
有机化学
电信
遗传学
细菌
计算机科学
生物
作者
Li Zhou,Zhen Zhang,Changxia Shi,Miriam Scoti,Deepak Kumar Barange,Ravikumar R. Gowda,Eugene Y.‐X. Chen
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-04-06
卷期号:380 (6640): 64-69
被引量:79
标识
DOI:10.1126/science.adg4520
摘要
Polyhydroxyalkanoates (PHAs) have attracted increasing interest as sustainable plastics because of their biorenewability and biodegradability in the ambient environment. However, current semicrystalline PHAs face three long-standing challenges to broad commercial implementation and application: lack of melt processability, mechanical brittleness, and unrealized recyclability, the last of which is essential for achieving a circular plastics economy. Here we report a synthetic PHA platform that addresses the origin of thermal instability by eliminating α-hydrogens in the PHA repeat units and thus precluding facile cis-elimination during thermal degradation. This simple α,α-disubstitution in PHAs enhances the thermal stability so substantially that the PHAs become melt-processable. Synergistically, this structural modification also endows the PHAs with the mechanical toughness, intrinsic crystallinity, and closed-loop chemical recyclability.
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