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Sorbitol as a Chain Extender of Polyurethane Prepolymers to Prepare Self-Healable and Robust Polyhydroxyurethane Elastomers

机译:山梨糖醇作为聚氨酯预聚物的扩链剂可制备自愈性强的聚羟基聚氨酯弹性体

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摘要

A self-healable polyhydroxyurethane (S-PU) was synthesized from sorbitol, a biomass of polyhydric alcohol, by a simple process that is suitable for practical applications. In the synthesis, only two primary hydroxyl groups of sorbitol were considered for the chain extension of the polyurethane (PU) prepolymers to introduce free hydroxyl groups in PU. As a control, conventional PU was synthesized by hexane diol mediated chain extension. Relative to the control, S-PU showed excellent intrinsic self-healing property via exchange reaction, which was facilitated by the nucleophilic addition of the secondary hydroxyl groups without any catalytic assistance and improved tensile strength due to the enhanced hydrogen bonding. We also investigated the effect of the exchange reaction on the topological, mechanical, and rheological properties of S-PU. The suggested synthetic framework for S-PU is a promising alternative to the conventional poly hydroxyurethane, in which cyclic carbonates are frequently reacted with amines. As such, it is a facile and environmentally friendly material for use in coatings, adhesives, and elastomers.
机译:通过适用于实际应用的简单方法,由多元醇的生物质山梨糖醇合成可自我修复的聚羟基氨基甲酸酯(S-PU)。在合成中,仅考虑两个山梨糖醇伯羟基用于聚氨酯(PU)预聚物的扩链,以在PU中引入游离羟基。作为对照,通过己二醇介导的扩链合成常规PU。相对于对照,S-PU通过交换反应显示出优异的固有自我修复性能,这是由于仲羟基的亲核加成而没有任何催化助剂,并且由于增强的氢键而提高了拉伸强度。我们还研究了交换反应对S-PU的拓扑,机械和流变性质的影响。建议的S-PU合成框架是常规聚羟基氨基甲酸酯的有前途的替代品,在传统聚羟基氨基甲酸酯中,环状碳酸酯经常与胺反应。因此,它是一种用于涂料,胶粘剂和弹性体的简便,环保的材料。

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