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一种利用氮杂迈克尔加成反应制备耐水解非离子型水性聚酯的新方法。

A New Approach Utilizing Aza-Michael Addition for Hydrolysis-Resistance Non-Ionic Waterborne Polyester.

作者信息

Fu Hao, Gong Linbo, Gong Shuling

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China.

出版信息

Polymers (Basel). 2022 Jun 29;14(13):2655. doi: 10.3390/polym14132655.

Abstract

This work first synthesized a series of linear polyesters by step-growth polycondensation, then an amino-terminated hydrophilic polyether was grafted to the polyester as side-chains through aza-Michael addition to prepare a self-dispersible, non-ionic waterborne comb-like polyester (NWCPE). In contrast to traditional functionalization methods that usually require harsh reaction conditions and complex catalysts, the aza-Michael addition proceeds efficiently at room temperature without a catalyst. In this facile and mild way, the NWCPE samples with number-average molecular weight () of about 8000 g mol were obtained. All dispersions showed excellent storage stability, reflected by no delamination observed after 6 months of storage. The NWCPE dispersion displayed better hydrolysis resistance than an ionic waterborne polyester, as was indicated by a more slight change in pH value and after a period of storage. In addition, the film obtained after the NWCPE dispersion was cross-linked with the curing agent, it exhibited good water resistance, adhesion, and mechanical properties.

摘要

这项工作首先通过逐步增长缩聚反应合成了一系列线性聚酯,然后通过氮杂迈克尔加成反应将氨基封端的亲水性聚醚接枝到聚酯上作为侧链,以制备一种自分散的非离子型水性梳状聚酯(NWCPE)。与通常需要苛刻反应条件和复杂催化剂的传统功能化方法不同,氮杂迈克尔加成反应在室温下无需催化剂即可高效进行。通过这种简便温和的方法,获得了数均分子量()约为8000 g/mol的NWCPE样品。所有分散体均表现出优异的储存稳定性,储存6个月后未观察到分层现象即可证明。NWCPE分散体显示出比离子型水性聚酯更好的耐水解性,这一点在储存一段时间后pH值和的变化更为轻微上得到了体现。此外,NWCPE分散体与固化剂交联后得到的薄膜表现出良好 的耐水性、附着力和机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9986/9269099/99326497cd88/polymers-14-02655-sch001.jpg

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