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通过光驱动 C-C 键断裂实现硫醇-环氧热固性塑料的化学回收。

Chemical Recycling of Thiol Epoxy Thermosets via Light-Driven C-C Bond Cleavage.

机构信息

Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.

Department of Chemistry, Cornell University, Ithaca, New York 14853, United States.

出版信息

J Am Chem Soc. 2023 May 24;145(20):11151-11160. doi: 10.1021/jacs.3c00958. Epub 2023 May 11.

Abstract

Epoxy thermosets are high-volume materials that play a central role in a wide range of engineering applications; however, technologies to recycle these polymers remain rare. Here, we present a catalytic, light-driven method that enables chemical recycling of industrially relevant thiol epoxy thermosets to their original monomer at ambient temperature. This strategy relies on the proton-coupled electron transfer (PCET) activation of hydroxy groups within the polymer network to generate key alkoxy radicals that promote the fragmentation of the polymer through C-C bond β-scission. The method fully depolymerizes insoluble thiol epoxy thermosets into well-defined mixtures of small-molecule products, which can collectively be converted into the original monomer via a one-step dealkylation process. Notably, this process is selective and efficient even in the presence of other commodity plastics and additives commonly found in commercial applications. These results constitute an important step toward making epoxy thermosets recyclable and more generally exemplify the potential of PCET to offer a more sustainable end-of-life for a diverse array of commercial plastics.

摘要

环氧树脂是一种高用量的材料,在广泛的工程应用中起着核心作用;然而,回收这些聚合物的技术仍然很少见。在这里,我们提出了一种催化、光驱动的方法,可在环境温度下将工业相关的硫醇环氧树脂热固性塑料化学回收为其原始单体。该策略依赖于聚合物网络中羟基的质子耦合电子转移 (PCET) 激活,以生成关键的烷氧基自由基,通过 C-C 键 β 断裂促进聚合物的断裂。该方法可将不溶性硫醇环氧树脂热固性塑料完全解聚成小分子产物的明确定义混合物,这些小分子产物可以通过一步脱烷基化过程共同转化为原始单体。值得注意的是,即使存在其他常见于商业应用中的商品塑料和添加剂,该过程也具有选择性和高效性。这些结果是使环氧树脂热固性塑料可回收的重要一步,更广泛地体现了 PCET 为各种商业塑料提供更可持续的生命周期结束的潜力。

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