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High-performance lignin-mimetic polyesters

机译:高性能木质素模拟聚酯

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Liquid crystalline (LC) polymers were prepared by an in-bulk polycondensation of bioavaliable aromatic hydroxyl(carboxylic acid)s. p-Coumaric acid (4HCA) and its derivatives were selected as phytomonomers. The 4HCA homopolymer showed a thermotropic LC phase only in a state of low molecular weight. The copolymers of 4HCA with bile acids such as lithocholic acid (LCA) and cholic acid (CA) showed excellent cell compatibilities but low molecular weights. However, P(4HCA-co-CA)s allowed LC spinning to create molecularly oriented biofibers, presumably due to the chain entanglement that occurs during in-bulk chain propagation into hyperbranching architecture. P{4HCA-co-3,4-dihydroxycinnamic acid (DHCA)}s showed high molecular weight, high mechanical strength, high Young's modulus, and high softening temperature, which may be achieved through the entanglement by in-bulk formation of hyperbranching, rigid structures. P(4HCA-co-DHCA)s showed a smooth hydrolysis, in-soil degradation, and photo-tunable hydrolysis. Thus, P(4HCA-co-DHCA)s might be applied as an environmentally degradable plastic with extremely high performance.
机译:液晶(LC)聚合物是通过生物利用的芳香族羟基(羧酸)的本体缩聚反应制备的。选择对香豆酸(4HCA)及其衍生物作为植物单体。 4HCA均聚物仅在低分子量状态下显示出热致LC相。 4HCA与胆汁酸(例如胆石酸(LCA)和胆酸(CA))的共聚物显示出优异的细胞相容性,但分子量较低。但是,P(4HCA-co-CA)允许LC旋转以产生分子取向的生物纤维,这大概是由于在散装链传播到超支化体系中发生的链缠结。 P {4HCA-co-3,4-二羟基肉桂酸(DHCA)} s表现出高分子量,高机械强度,高杨氏模量和高软化温度,这可以通过大支链的本体形成缠结来实现,刚性结构。 P(4HCA-co-DHCA)s表现出平滑的水解,土壤中降解和光可调水解。因此,P(4HCA-co-DHCA)可以用作具有极高性能的可环境降解的塑料。

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