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Degradable thermosets based on labile bonds or linkages: A review

机译:基于不稳定债券或联系的可降解热固性:综述

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Compared with thermoplastic polymers, thermoset polymers are difficult to recycle because they can not be remolded once cured and often do not decompose under mild conditions. Thermosets designed to be degradable afford a useful route to obtain thermoset recyclability and enable the recycling of valuable components that may be encapsulated in thermoset materials. In this review, the need for degradable thermosets as well as a summary of research progress is presented. Degradable thermosets are divided into different categories based on the different labile bonds or linkages studied such as esters, sulfur containing linkages (disulfide, sulfonate, 5-membered cyclic dithiocarbonate, trithiocarbonate, sulfite), nitrogen containing structures (acylhydrazone, alkoxyamine, azlactones, Schiff base, hindered ureas, aminal, carbamate), orthoester structures, carbonates, acetals, hemiacetals, olefinic bonds, D-A addition structures, vicinal tricarbonyl structures, peroxide bonds, phosphorus containing structures, tertiary ether bonds, and so on. The synthetic route, recycling methods, degradation mechanisms and progress in research of each approach to degradable thermosets is described. The efforts of the applicability of some degradable thermosets are also summarized. Finally, conclusions and trends of future work are highlighted. (C) 2017 Elsevier B.V. All rights reserved.
机译:与热塑性聚合物相比,热固性聚合物难以回收,因为它们不能再折叠一次,并且通常在温和条件下不分解。设计为可降解的热固性能够获得有用的途径,以获得热固性再循环性,并能够再循环可在热固性材料中包封的有价值的组分。在本综述中,提出了对可降解热固性的需求以及研究进展摘要。可降解的热固性剂分为基于所研究的不同的不稳定键或诸如酯,含硫胶(二硫化物,磺酸盐,5-元环状二碳酸二碳酸酯,三碳酸酯,亚硫酸盐),含氮结构(酰基腙,烷氧基胺,氮曲酮,Schiff基础,阻碍尿素,氨基,氨基甲酸酯),正交结构,碳酸盐,缩醛,半缩醛,烯烃键,DA加法结构,邻甲基三羰基结构,过氧化物键,含磷结构,叔醚键等。描述了合成途径,再循环方法,降解机制和对可降解热固性的各方法的研究进展。还概述了一些可降解热固性可解觉的适用性的努力。最后,突出了未来工作的结论和趋势。 (c)2017 Elsevier B.v.保留所有权利。

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