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可化学回收聚合物合成的进展

Advances in the Synthesis of Chemically Recyclable Polymers.

作者信息

Li Xin-Lei, Ma Kai, Xu Fei, Xu Tie-Qi

机构信息

State Key Laboratory of Fine Chemicals Department of Chemistry School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, P. R. China.

出版信息

Chem Asian J. 2023 Feb 1;18(3):e202201167. doi: 10.1002/asia.202201167. Epub 2023 Jan 9.

Abstract

The development of modern society is closely related to polymer materials. However, the accumulation of polymer materials and their evolution in the environment causes not only serious environmental problems, but also waste of resources. Although physical processing can be used to reuse polymers, the properties of the resulting polymers are significantly degraded. Chemically recyclable polymers, a type of polymer that degrades into monomers, can be an effective solution to the degradation of polymer properties caused by physical recycling of polymers. The ideal chemical recycling of polymers, i. e., quantitative conversion of the polymer to monomers at low energy consumption and repolymerization of the formed monomers into polymers with comparable properties to the original, is an attractive research goal. In recent years, significant progress has been made in the design of recyclable polymers, enabling the regulation of the "polymerization-depolymerization" equilibrium and closed-loop recycling under mild conditions. This review will focus on the following aspects of closed-loop recycling of poly(sulfur) esters, polycarbonates, polyacetals, polyolefins, and poly(disulfide) polymer, illustrate the challenges in this area, and provide an outlook on future directions.

摘要

现代社会的发展与高分子材料密切相关。然而,高分子材料在环境中的积累及其演变不仅会导致严重的环境问题,还会造成资源浪费。虽然物理加工可用于高分子的再利用,但所得高分子的性能会显著下降。可化学回收的高分子,即一种可降解为单体的高分子,可能是解决高分子物理回收导致性能下降问题的有效方法。高分子理想的化学回收,即在低能耗下将高分子定量转化为单体,并将生成的单体重新聚合成性能与原始高分子相当的高分子,是一个具有吸引力的研究目标。近年来,可回收高分子的设计取得了重大进展,能够在温和条件下调节“聚合-解聚”平衡并实现闭环回收。本综述将聚焦聚(硫)酯、聚碳酸酯、聚缩醛、聚烯烃和聚(二硫)聚合物闭环回收的以下方面问题,阐述该领域面临的挑战,并展望未来发展方向。

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