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Progress in non-isocyanate polyurethanes synthesized from cyclic carbonate intermediates and di- or polyamines in the context of structure-properties relationship and from an environmental point of view

机译:从环状结构碳酸酯中间体与二胺或多胺合成的非异氰酸酯聚氨酯的结构-性能关系和环境角度的研究进展

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摘要

Commercially, polyurethanes are produced by the reaction of diisocyanates, polyols (polyester or polyether) and low molecular weight chain extender. Toxicity, moisture sensitivity and phosgene-based synthesis of diisocyanates resulted in investigations focused on obtaining the non-isocyanate polyurethanes (NIPUs). This work presents the review of synthesis and structure-properties relationship of non-isocyanate polyurethanes obtained by reacting cyclic carbonated intermediates with diamines or polyamines. Moreover, the presented methods of NIPU synthesis were analysed from the environmental point of view. Described five-membered ring cyclic carbonate intermediates were obtained by carbonation of glycidyl ethers or thiol-ene coupling of unsaturated cyclic carbonate monomers and thiols. The special interest was put on the bio-based non-isocyanate polyurethanes, obtained from chemically modified bio-based substances, e.g. carbonated vegetable oils. The mechanical and thermal properties of NIPUs are affected by functionality, structure and molecular weight of cyclic carbonate intermediates and diamines or polyamines.
机译:在商业上,聚氨酯是通过二异氰酸酯,多元醇(聚酯或聚醚)和低分子量扩链剂的反应生产的。二异氰酸酯的毒性,湿气敏感性和基于光气的合成导致研究侧重于获得非异氰酸酯聚氨酯(NIPU)。这项工作提出了通过使环状碳酸酯中间体与二胺或多胺反应获得的非异氰酸酯聚氨酯的合成和结构-性能关系的综述。此外,从环境的角度分析了提出的NIPU合成方法。通过缩水甘油醚的碳化或不饱和环状碳酸酯单体和硫醇的硫醇-烯偶联获得了所述的五元环环状碳酸酯中间体。特别关注的是生物基非异氰酸酯聚氨酯,它是从经过化学修饰的生物基物质(如碳酸植物油。 NIPU的机械和热性能受环状碳酸酯中间体和二胺或多胺的功能性,结构和分子量影响。

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