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首页> 外文期刊>Angewandte Chemie >Alternating Copolymerization of Propylene Oxide with Biorenewable Terpene-Based Cyclic Anhydrides: A Sustainable Route to Aliphatic Polyesters with High Glass Transition Temperatures
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Alternating Copolymerization of Propylene Oxide with Biorenewable Terpene-Based Cyclic Anhydrides: A Sustainable Route to Aliphatic Polyesters with High Glass Transition Temperatures

机译:环氧丙烷与可生物再生的基于萜烯的环状酸酐的交替共聚:高玻璃化转变温度的脂族聚酯的可持续路线

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摘要

The alternating copolymerization of propylene oxide with terpene-based cyclic anhydrides catalyzed by chromium, cobalt, and aluminum salen complexes is reported. The use of the Diels-Alder adduct of -terpinene and maleic anhydride as the cyclic anhydride comonomer results in amorphous polyesters that exhibit glass transition temperatures (T-g) of up to 109 degrees C. The polymerization conditions and choice of catalyst have a dramatic impact on the molecular weight distribution, the relative stereochemistry of the diester units along the polymer chain, and ultimately the T-g of the resulting polymer. The aluminum salen complex exhibits exceptional selectivity for copolymerization without transesterification or epimerization side reactions. The resulting polyesters are highly alternating and have high molecular weights and narrow polydispersities.
机译:据报道,环氧丙烷与三价铬,钴和铝salen配合物催化的基于萜烯的环状酸酐交替共聚。使用-萜品烯和顺丁烯二酸酐的狄尔斯-阿尔德加合物作为环状酸酐共聚单体会导致无定形聚酯显示出高达109摄氏度的玻璃化转变温度(Tg)。聚合条件和催化剂的选择对分子量分布,沿着聚合物链的二酯单元的相对立体化学,最终是所得聚合物的Tg。 Salen铝络合物对共聚反应具有出色的选择性,而不会发生酯交换反应或差向异构化副反应。所得的聚酯是高度交替的并且具有高分子量和窄的多分散性。

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