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可持续脂环族聚氨酯:从合成到应用

Sustainable cycloaliphatic polyurethanes: from synthesis to applications.

作者信息

Mouren Agathe, Avérous Luc

机构信息

BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 2, France.

出版信息

Chem Soc Rev. 2023 Jan 3;52(1):277-317. doi: 10.1039/d2cs00509c.

Abstract

Polyurethanes (PUs) are a versatile and major polymer family, mainly produced polyaddition between polyols and polyisocyanates. A large variety of fossil-based building blocks is commonly used to develop a wide range of macromolecular architectures with specific properties. Due to environmental concerns, legislation, rarefaction of some petrol fractions and price fluctuation, sustainable feedstocks are attracting significant attention, , plastic waste and biobased resources from biomass. Consequently, various sustainable building blocks are available to develop new renewable macromolecular architectures such as aromatics, linear aliphatics and cycloaliphatics. Meanwhile, the relationship between the chemical structures of these building blocks and properties of the final PUs can be determined. For instance, aromatic building blocks are remarkable to endow materials with rigidity, hydrophobicity, fire resistance, chemical and thermal stability, whereas acyclic aliphatics endow them with oxidation and UV light resistance, flexibility and transparency. Cycloaliphatics are very interesting as they combine most of the advantages of linear aliphatic and aromatic compounds. This original and unique review presents a comprehensive overview of the synthesis of sustainable cycloaliphatic PUs using various renewable products such as biobased terpenes, carbohydrates, fatty acids and cholesterol and/or plastic waste. Herein, we summarize the chemical modification of the main sustainable cycloaliphatic feedstocks, synthesis of PUs using these building blocks and their corresponding properties and subsequently present their major applications in hot-topic fields, including building, transportation, packaging and biomedicine.

摘要

聚氨酯(PUs)是一类用途广泛的主要聚合物家族,主要通过多元醇和多异氰酸酯之间的聚加成反应制备。各种各样基于化石的原料通常被用于开发具有特定性能的多种大分子结构。由于环境问题、法规、一些石油馏分的稀缺以及价格波动,可持续原料正受到广泛关注,包括塑料废料和来自生物质的生物基资源。因此,有多种可持续原料可用于开发新型可再生大分子结构,如芳烃、线性脂肪族和脂环族化合物。同时,可以确定这些原料的化学结构与最终聚氨酯性能之间的关系。例如,芳烃原料能显著赋予材料刚性、疏水性、耐火性、化学和热稳定性,而非环状脂肪族原料则赋予它们抗氧化性、抗紫外线性能、柔韧性和透明度。脂环族化合物非常有趣,因为它们兼具线性脂肪族和芳香族化合物的大部分优点。这篇新颖且独特的综述全面概述了使用各种可再生产品(如生物基萜烯、碳水化合物、脂肪酸和胆固醇)和/或塑料废料合成可持续脂环族聚氨酯的情况。在此,我们总结了主要可持续脂环族原料的化学改性、使用这些原料合成聚氨酯及其相应性能,随后介绍它们在建筑、交通、包装和生物医学等热门领域的主要应用。

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