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可通过烯烃复分解反应断裂的不饱和多元醇制备的选择性解聚型聚氨酯

Selectively Depolymerizable Polyurethanes from Unsaturated Polyols Cleavable by Olefin Metathesis.

机构信息

Department of Organic Materials Science, Sandia National Laboratories, Albuquerque, NM, 87185, USA.

Department of Photovoltaics and Materials Technology, Sandia National Laboratories, Albuquerque, NM, 87185, USA.

出版信息

Macromol Rapid Commun. 2021 Feb;42(4):e2000571. doi: 10.1002/marc.202000571. Epub 2020 Dec 9.

Abstract

This communication describes a novel series of linear and crosslinked polyurethanes (PUs) and their selective depolymerization under mild conditions. Two unique polyols are synthesized bearing unsaturated units in a configuration designed to favor ring-closing metathesis (RCM) to five- and six-membered cycloalkenes. These polyols are co-polymerized with toluene diisocyanate to generate linear PUs and trifunctional hexamethylene- and diphenylmethane-based isocyanates to generate crosslinked PUs. The polyol design is such that the RCM reaction cleaves the backbone of the polymer chain. Upon exposure to dilute solutions of Grubbs' catalyst under ambient conditions, the PUs are rapidly depolymerized to low molecular weight, soluble products bearing vinyl and cycloalkene functionalities. These functionalities enable further re-polymerization by traditional strategies for polymerization of double bonds. It is anticipated that this general approach can be expanded to develop a range of chemically recyclable condensation polymers that are readily depolymerized by orthogonal metathesis chemistry.

摘要

本通讯描述了一系列新型的线性和交联型聚氨酯(PU),以及它们在温和条件下的选择性解聚。合成了两种独特的多元醇,它们带有不饱和单元,其构型旨在有利于环 closing metathesis(RCM)生成五元和六元环烯烃。这些多元醇与甲苯二异氰酸酯共聚生成线性 PU,与三官能度的六亚甲基和二苯基甲烷基异氰酸酯共聚生成交联 PU。多元醇的设计使得 RCM 反应切断了聚合物链的主链。在环境条件下暴露于 Grubbs 催化剂的稀溶液中时,PU 迅速解聚成低分子量、可溶的产物,带有乙烯基和环烯烃官能团。这些官能团可通过双键聚合的传统策略进一步重新聚合。预计这种通用方法可以扩展到开发一系列可通过正交交叉复分解化学进行化学回收的可交联缩聚物。

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