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可裂解共聚单体实现化学循环再生聚苯乙烯:一种提高乙烯基聚合物循环性的通用方法。

Cleavable Comonomers for Chemically Recyclable Polystyrene: A General Approach to Vinyl Polymer Circularity.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

J Am Chem Soc. 2022 Jul 20;144(28):12979-12988. doi: 10.1021/jacs.2c05374. Epub 2022 Jun 28.

Abstract

Many common polymers, especially vinyl polymers, are inherently difficult to chemically recycle and are environmentally persistent. The introduction of low levels of cleavable comonomer additives into existing vinyl polymerization processes could facilitate the production of chemically deconstructable and recyclable variants with otherwise equivalent properties. Here, we report thionolactones that serve as cleavable comonomer additives for the chemical deconstruction and recycling of vinyl polymers prepared through free radical polymerization, using polystyrene (PS) as a model example. Deconstructable PS of different molar masses (∼20-300 kDa) bearing varied amounts of statistically incorporated thioester backbone linkages (2.5-55 mol %) can be selectively depolymerized to yield well-defined thiol-terminated fragments (<10 kDa) that are suitable for oxidative repolymerization to generate recycled PS of nearly identical molar mass to the parent material, in good yields (80-95%). A theoretical model is provided to generalize this molar mass memory effect. Notably, the thermomechanical properties of deconstructable PS bearing 2.5 mol % of cleavable linkages and its recycled product are similar to those of virgin PS. The additives were also shown to be effective for deconstruction of a cross-linked styrenic copolymer and deconstruction and repolymerization of a polyacrylate, suggesting that cleavable comonomers may offer a general approach toward circularity of many vinyl (co)polymers.

摘要

许多常见的聚合物,尤其是乙烯基聚合物,在化学上难以回收且在环境中持久存在。在现有的乙烯基聚合工艺中引入低水平的可裂解共聚单体添加剂,可以生产具有相同性能但可化学解构和可回收的变体。在这里,我们报告了硫内酰胺,它们可用作自由基聚合制备的乙烯基聚合物的化学解构和回收的可裂解共聚单体添加剂,以聚苯乙烯(PS)为例。可解构的 PS 具有不同的分子量(约 20-300 kDa),具有不同数量的统计结合的硫酯主链键(2.5-55 mol%),可以选择性地解聚,生成定义明确的巯基封端片段(<10 kDa),这些片段适合氧化重聚合,生成与原始材料几乎相同分子量的回收 PS,收率高(80-95%)。提供了一个理论模型来概括这种分子量记忆效应。值得注意的是,具有 2.5 mol%可裂解键的可解构 PS 及其回收产物的热机械性能与 virgin PS 相似。添加剂还被证明可有效解构交联苯乙烯共聚物以及解聚和重聚合聚丙烯酸酯,这表明可裂解共聚单体可能为许多乙烯基(共)聚合物的循环提供一种通用方法。

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