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Tannin-Based Copolymer Resins: Synthesis and Characterization by Solid State 13C NMR and FT-IR Spectroscopy

机译:单宁基共聚物树脂:固态13C NMR和FT-IR光谱的合成和表征

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摘要

In recent years, the interest for bio-sources is rising exponentially and tannins extracts are one of the most interesting, easily-available, phenolic building blocks. The condensed tannins or proanthocyanidins are already known for their polymerization chemistry, which is the basis for several natural-based materials (e.g., adhesives, foams). In the present work we aim to observe the behavior of the extract of Acacia Mimosa (Acacia mearnsii) when reacted with several possible co-monomers at different relative amount, pH and temperature conditions. The more insoluble copolymers obtained with formaldehyde, hexamine, glyoxal, maleic anhydride, furfural and furfuryl alcohol were analyzed through solid state 13C NMR (Nuclear magnetic resonance) and FT-IR (Fourier Transform-Infrared) spectroscopy. The 13C NMR afforded the opportunity to detect: (i) aromatic substitutions and consequent poly-condensations for the majority of the hardeners studied; (ii) acylation for the maleic anhydride and also some; (iii) Diels–Alder arrangements for the furanic co-monomers; the FT-IR spectroscopy suggested that the formaldehyde and hexamine copolymers present a higher cross-linking degree.
机译:近年来,对生物源的兴趣呈指数增长,单宁提取物是最有趣的,易于获得的酚类建筑材料之一。缩合的单宁或原花色素的聚合化学已经众所周知,这是几种天然材料(例如,粘合剂,泡沫)的基础。在目前的工作中,我们旨在观察相思提取物(Acacia mearnsii)与几种可能的共聚单体在不同的相对量,pH和温度条件下反应时的行为。通过固态 13 NMR(核磁共振)和FT-IR(傅立叶变换红外)光谱法分析了甲醛,六胺,乙二醛,乙二醛,马来酸酐,糠醛和糠醇得到的不溶性共聚物。 。 13 C NMR提供了检测以下方面的机会:(i)大多数研究的硬化剂的芳族取代和随之而来的缩聚; (ii)马来酸酐和一些的酰化; (iii)Diels-呋喃共聚单体的Alder安排; FT-IR光谱表明甲醛和六胺共聚物具有较高的交联度。

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