聚酯纤维
聚合
合成子
有机化学
化学
聚合物
材料科学
缩聚物
高分子化学
作者
A. Stamm,Johannes Öhlin,Caroline Mosbech,Peter Olsén,Boyang Guo,Elisabeth Söderberg,Antonino Biundo,Linda Fogelström,Shubhankar Bhattacharyya,Uwe T. Bornscheuer,Eva Malmström,Per‐Olof Syrén
出处
期刊:JACS Au
[American Chemical Society]
日期:2021-10-08
卷期号:1 (11): 1949-1960
被引量:19
标识
DOI:10.1021/jacsau.1c00312
摘要
Generation of renewable polymers is a long-standing goal toward reaching a more sustainable society, but building blocks in biomass can be incompatible with desired polymerization type, hampering the full implementation potential of biomaterials. Herein, we show how conceptually simple oxidative transformations can be used to unlock the inherent reactivity of terpene synthons in generating polyesters by two different mechanisms starting from the same α-pinene substrate. In the first pathway, α-pinene was oxidized into the bicyclic verbanone-based lactone and subsequently polymerized into star-shaped polymers via ring-opening polymerization, resulting in a biobased semicrystalline polyester with tunable glass transition and melting temperatures. In a second pathway, polyesters were synthesized via polycondensation, utilizing the diol 1-(1'-hydroxyethyl)-3-(2'-hydroxy-ethyl)-2,2-dimethylcyclobutane (HHDC) synthesized by oxidative cleavage of the double bond of α-pinene, together with unsaturated biobased diesters such as dimethyl maleate (DMM) and dimethyl itaconate (DMI). The resulting families of terpene-based polyesters were thereafter successfully cross-linked by either transetherification, utilizing the terminal hydroxyl groups of the synthesized verbanone-based materials, or by UV irradiation, utilizing the unsaturation provided by the DMM or DMI moieties within the HHDC-based copolymers. This work highlights the potential to apply an oxidative toolbox to valorize inert terpene metabolites enabling generation of biosourced polyesters and coatings thereof by complementary mechanisms.
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