Sustainable cycloaliphatic polyurethanes: from synthesis to applications

Устойчивые циклоалифатические полиуретаны: от синтеза до применения
Luc Avérous, Agathe Mouren
2022-12-15

biobased terpenesplastic wastepolyurethane applicationsrenewable feedstockssustainable cycloaliphatic polyurethanes
, 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.
1
Cycloaliphatic structures combine many advantages of aromatic and linear aliphatic building blocks, including rigidity, durability, oxidation and UV resistance, flexibility, and transparency.
2
Sustainable cycloaliphatic polyurethane building blocks can be derived from biobased terpenes, carbohydrates, fatty acids, cholesterol, and plastic waste.
3
Sustainable cycloaliphatic polyurethanes are identified as promising renewable macromolecular materials for multiple high-impact application areas.
4
The chemical structures of renewable feedstocks strongly influence the resulting polyurethane properties, including hydrophobicity, fire resistance, chemical and thermal stability, and mechanical behavior.
5
The review covers chemical modification of sustainable cycloaliphatic feedstocks, polyurethane synthesis, resulting properties, and applications in construction, transportation, packaging, and biomedicine.

Sustainable cycloaliphatic polyurethanes synthesized from renewable feedstocks and/or plastic waste

The synthesis, structure–property relationships, properties, and applications of sustainable cycloaliphatic polyurethanes

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2022-12-15
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Authors
Luc Avérous
Agathe Mouren
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