Cesprini Emanuele, Šket Primož, Causin Valerio, Zanetti Michela, Tondi Gianluca
Land Environment Agriculture & Forestry Department, University of Padua, Viale dell'Università 16, 35020 Legnaro, Italy.
Slovenian NMR Centre, National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.
Polymers (Basel). 2021 Dec 16;13(24):4412. doi: 10.3390/polym13244412.
One of the major challenges currently in the field of material science is finding natural alternatives to the high-performing plastics developed in the last century. Consumers trust synthetic products for their excellent properties, but they are becoming aware of their impact on the planet. One of the most attractive precursors for natural polymers is tannin extracts and in particular condensed tannins. Quebracho () extract is one of the few industrially available flavonoids and can be exploited as a building block for thermoset resins due to its phenol-like reactivity. The aim of this study was to systematically investigate different hardeners and evaluate the water resistance, thermal behavior, and chemical structure of the quebracho tannin-based polymers in order to understand their suitability as adhesives. It was observed that around 80% of the extract is resistant to leaching when 5% of formaldehyde or hexamine or 10% of glyoxal or furfural are added. Additionally, furfuryl alcohol guarantees high leaching resistance, but only at higher proportions (20%). The quebracho-based formulations showed specific thermal behavior during hardening and higher degradation resistance than the extract. Finally, these polymers undergo similar chemistry to those of mimosa, with exclusive reactivity of the A-ring of the flavonoid.
材料科学领域目前面临的主要挑战之一是找到天然替代品,以取代上世纪开发的高性能塑料。消费者因其优异性能而信赖合成产品,但他们也逐渐意识到这些产品对地球的影响。天然聚合物最具吸引力的前体之一是单宁提取物,尤其是缩合单宁。柯伯栲提取物是少数几种可工业化获取的黄酮类化合物之一,由于其类似酚的反应活性,可作为热固性树脂的原料。本研究的目的是系统地研究不同的固化剂,并评估基于柯伯栲单宁的聚合物的耐水性、热行为和化学结构,以了解它们作为粘合剂的适用性。研究发现,当添加5%的甲醛或六亚甲基四胺或10%的乙二醛或糠醛时,约80%的提取物具有抗浸出性。此外,糠醇保证了高抗浸出性,但仅在较高比例(20%)时有效。基于柯伯栲的配方在固化过程中表现出特定的热行为,并且比提取物具有更高的抗降解性。最后,这些聚合物与含羞草聚合物具有相似的化学性质,黄酮类化合物的A环具有独特的反应活性。