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Enzymatic synthesis of 2,5-furandicarboxylic acid-based semi-aromatic polyamides: enzymatic polymerization kinetics, effect of diamine chain length and thermal properties

机译:基于2,5-呋喃二甲酸的半芳族聚酰胺的酶促合成:酶促聚合动力学,二胺链长和热性能的影响

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摘要

2,5-Furandicarboxylic acid (FDCA)-based semi-aromatic polyamides are novel biobased alternatives to petrol-based semi-aromatic polyamides (polyphthalamides), that have a broad commercial interest as engineering thermoplastics and high performance materials. In this study, a series of FDCA-based semi-aromatic polyamides is successfully produced via Novozym (R) 435 (N435, an immobilized form of Candida antarctica lipase b (CALB))-catalyzed polycondensation of (potentially) biobased dimethyl 2,5-furandicarboxylate and aliphatic diamines differing in chain length (C4-C12), using a one-stage method at 90 degrees C in toluene. The obtained polyamides reach high weight-average molecular weights ranging from 15 800 to 48 300 g mol(-1); and N435 shows the highest selectivity towards 1,8-octanediame (C8). MALDI-ToF MS analysis indicates that no byproducts are formed during the enzymatic polymerization. Study of the kinetics of the enzymatic polymerization suggests that phase separation of FDCA-based oligoamides/polyamides takes place in the early stage of polymerization, and the isolated products undergo an enzyme-catalyzed solid-state polymerization. However, the isolation yields of the purified products from the enzymatic polymerizations are less than similar to 50% due to the production of a large amount of low molecular weight products that are washed away during the purification steps. Furthermore, the thermal properties of the enzymatic FDCA-based semi-aromatic polyamides are carefully investigated, and compared to those of the FDCA-based and petrol-based counterparts produced via conventional synthesis techniques as reported in literature.
机译:基于2,5-呋喃二甲酸(FDCA)的半芳族聚酰胺是基于汽油的半芳族聚酰胺(聚邻苯二甲酰胺)的新型生物基替代品,作为工程热塑性塑料和高性能材料在商业上具有广泛的兴趣。在这项研究中,通过Novozym(R)435(N435,一种固定形式的南极假丝酵母脂肪酶b(CALB))催化(潜在)生物基二甲基2,5的缩聚反应成功地生产了一系列基于FDCA的半芳族聚酰胺。在90°C的甲苯中使用一步法,在链长(C4-C12)上不同的-呋喃二甲酸和脂族二胺。所得聚酰胺的重均分子量高至15 800至48 300 g mol(-1); N435对1,8-辛二胺(C8)的选择性最高。 MALDI-ToF MS分析表明,在酶促聚合过程中没有形成副产物。酶促聚合反应动力学的研究表明,基于FDCA的寡酰胺/聚酰胺的相分离发生在聚合反应的早期,分离出的产物经历了酶催化的固态聚合反应。然而,由于产生大量的在纯化步骤中被洗掉的低分子量产物,因此从酶促聚合中纯化产物的分离产率小于约50%。此外,仔细研究了基于酶FDCA的半芳族聚酰胺的热性能,并将其与通过文献中报道的通过常规合成技术生产的基于FDCA和汽油的对等物的热性能进行了比较。

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