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从热固性材料的闭环解聚中直接回收单体

Direct Monomer Recovery from Ring-Closing Depolymerization of Thermosets.

作者信息

Zheng Chihui, Slor Gadi, Ma Youwei, Stellacci Francesco

机构信息

Department Institute of Materials, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

Institute of Bioengineering, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

出版信息

ACS Macro Lett. 2024 Dec 17;13(12):1704-1710. doi: 10.1021/acsmacrolett.4c00665. Epub 2024 Dec 7.

Abstract

Recovering monomers from the depolymerization of thermosets presents a significant challenge, which becomes even more daunting if one sets the goal of doing it directly, i.e., without complex chemical separation steps. To this end, we have synthesized a new type of polycarbonate thermoset by first copolymerizing alkyl cyclic carbonates (s) with small amounts of allyloxy cyclic carbonates (s), followed by cross-linking the resulting allyloxy polycarbonate with excess tetrathiol compounds under UV irradiation. These cross-linked polycarbonates demonstrate enhanced thermal and mechanical properties compared to their linear analogues, while maintaining the linear polymers' capacity for ring-closing depolymerization. The depolymerization process enables the direct recovery of and its dimer, bypassing complex chemical separation steps that are commonly employed in the recycling of conventional chemically recyclable thermosets. The yields range from 74.7% to 91.7% depending on the ratios of to in the thermosets. Furthermore, the recovered compounds can be repolymerized with s leading to polycarbonate of the same quality to the initially synthesized one.

摘要

从热固性塑料的解聚中回收单体是一项重大挑战,如果设定直接回收的目标,即不经过复杂的化学分离步骤,这一挑战就会变得更加艰巨。为此,我们通过首先使烷基环状碳酸酯与少量烯丙氧基环状碳酸酯共聚,然后在紫外线照射下使所得的烯丙氧基聚碳酸酯与过量的四硫醇化合物交联,合成了一种新型聚碳酸酯热固性塑料。与线性类似物相比,这些交联聚碳酸酯表现出增强的热性能和机械性能,同时保持了线性聚合物的闭环解聚能力。解聚过程能够直接回收及其二聚体,绕过了传统化学可回收热固性塑料回收中常用的复杂化学分离步骤。根据热固性塑料中与的比例不同,产率范围为74.7%至91.7%。此外,回收的化合物可以与重新聚合,得到与最初合成的质量相同的聚碳酸酯。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44ee/11656707/43e9213fd300/mz4c00665_0003.jpg

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