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高分子量多功能甘油聚羟基聚氨酯(PHUs)的合成

Synthesis of High-Molecular-Weight Multifunctional Glycerol Polyhydroxyurethanes PHUs.

作者信息

Nohra Bassam, Candy Laure, Blanco Jean-François, Raoul Yann, Mouloungui Zéphirin

机构信息

Laboratoire de Chimie Agro-industrielle (LCA), Université de Toulouse, INRA, INPT, Toulouse, France.

Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France.

出版信息

Molecules. 2016 Sep 11;21(9):1220. doi: 10.3390/molecules21091220.

Abstract

Glycerol carbonate acrylate is a 5-membered cyclic carbonate synthesized from glycerol that is used as a chemical coupling agent and has proven highly suitable for use in the synthesis of multifunctional polyhydroxyurethanes (PHUs). The multifunctionality of the structure of PHUs is determined by the density of the carbon-amine groups generated by the Aza-Michael reaction and that of the urethane groups and adjacent primary and secondary hydroxyl groups generated by aminolysis. Glycerol carbonate acrylate is polymerized with polyfunctional mono-, di-, tri, and tetra-amines, by type-AB polyaddition, either in bulk or in solution, through stepwise or one-pot reaction strategies in the absence of added catalysts. These approaches result in the generation of linear, interchain, and crosslinked structures, through the polyaddition of linear and branched amines to the ethylene and cyclic carbonate sites of glycerol carbonate acrylate. The resulting collection of organic molecules gives rise to polyethylene amino ester PHUs with a high molar mass, exceeding 20,000 g·mol(-1), with uniform dispersity.

摘要

碳酸甘油酯丙烯酸酯是一种由甘油合成的五元环状碳酸酯,用作化学偶联剂,已被证明非常适合用于合成多功能聚羟基聚氨酯(PHU)。PHU结构的多功能性由氮杂迈克尔反应产生的碳 - 胺基团的密度以及氨解产生的聚氨酯基团和相邻的伯羟基和仲羟基的密度决定。碳酸甘油酯丙烯酸酯通过AB型逐步加聚反应,与多官能单胺、二胺、三胺和四胺在本体或溶液中,在不添加催化剂的情况下,通过逐步或一锅法反应策略进行聚合。这些方法通过将直链和支链胺加聚到碳酸甘油酯丙烯酸酯的乙烯基和环状碳酸酯位点,生成线性、链间和交联结构。由此产生的有机分子集合形成了摩尔质量超过20,000 g·mol⁻¹、具有均匀分散性的聚乙烯氨基酯PHU。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baa6/6273218/46cfed59494a/molecules-21-01220-g001.jpg

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