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基于呋喃的二胺的合成及其在生物基聚酰亚胺制备中的应用。

Synthesis of Furan-Based Diamine and Its Application in the Preparation of Bio-Based Polyimide.

作者信息

Zhang Yao, Chen Lei, He Yima, Luo Weiyu, Li Kaixin, Min Yonggang

机构信息

School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, China.

出版信息

Polymers (Basel). 2023 Feb 22;15(5):1088. doi: 10.3390/polym15051088.

Abstract

Furan-based compounds are a new class of compounds characteristic of wide abundance, feasible availability, and environmental friendliness. Presently, polyimide (PI) is the best membrane insulation material in the world, which is widely used in the fields of national defense, liquid crystals, lasers, and so on. At present, most polyimides are synthesized using petroleum-based monomers bearing benzene rings, while furan-based compounds bearing furan rings are rarely used as monomers. The production of petroleum-based monomers is always associated with many environmental issues, and their substitution with furan-based compounds seems a solution to addressing these issues. In this paper, t-butoxycarbonylglycine (BOC-glycine) and 2,5-furandimethanol, bearing furan rings, were employed to synthesize BOC-glycine 2,5-furandimethyl ester, which was further applied for the synthesis of furan-based diamine. This diamine is generally used to synthesize bio-based PI. Their structures and properties were thoroughly characterized. The characterization results showed that BOC-glycine could be effectively obtained using different posttreatment methods. And BOC-glycine 2,5-furandimethyl ester could be effectively obtained by optimizing the accelerating agent of 1,3-dicyclohexylcarbodiimide(DCC) with either 1.25 mol/L or 1.875 mol/L as the optimum value. The PIs originated from furan-based compounds were synthesized and their thermal stability and surface morphology were further characterized. Although the obtained membrane was slightly brittle (mostly due to the less rigidity of furan ring as compared with benzene ring), the excellent thermal stability and smooth surface endow it a potential substitution for petroleum-based polymers. And the current research is also expected to shed some insight into the design and the fabrication of eco-friendly polymers.

摘要

呋喃基化合物是一类新型化合物,具有广泛的丰度、可行的可得性和环境友好性。目前,聚酰亚胺(PI)是世界上最好的膜绝缘材料,广泛应用于国防、液晶、激光等领域。目前,大多数聚酰亚胺是使用含苯环的石油基单体合成的,而含呋喃环的呋喃基化合物很少用作单体。石油基单体的生产总是伴随着许多环境问题,用呋喃基化合物替代它们似乎是解决这些问题的一种方法。在本文中,采用含呋喃环的叔丁氧羰基甘氨酸(BOC-甘氨酸)和2,5-呋喃二甲醇合成了BOC-甘氨酸2,5-呋喃二甲酯,并将其进一步应用于呋喃基二胺的合成。这种二胺通常用于合成生物基聚酰亚胺。对它们的结构和性能进行了全面表征。表征结果表明,采用不同的后处理方法可以有效地得到BOC-甘氨酸。通过优化1,3-二环己基碳二亚胺(DCC)的促进剂,以1.25 mol/L或1.875 mol/L为最佳值,可以有效地得到BOC-甘氨酸2,5-呋喃二甲酯。合成了源自呋喃基化合物的聚酰亚胺,并对其热稳定性和表面形貌进行了进一步表征。虽然得到的膜略显脆性(主要是因为呋喃环比苯环的刚性小),但其优异的热稳定性和平滑的表面使其有望替代石油基聚合物。目前的研究也有望为环保聚合物的设计和制造提供一些见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d43f/10006871/83d6d0b71813/polymers-15-01088-sch001.jpg

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