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通过直接利用封端剂杂质将废弃商品聚合物升级转化为高性能聚芳酯材料。

Upcycling waste commodity polymers into high-performance polyarylate materials with direct utilization of capping agent impurities.

作者信息

Li Cheng, Yan Guangming, Dong Zhongwen, Zhang Gang, Zhang Fan

机构信息

National Engineering Laboratory of EcoFriendly Polymeric Materials (Sichuan), College of Chemistry, Sichuan University, Chengdu, Sichuan, PR China.

Institute of Materials Science and Technology, Analysis and Testing Center, Sichuan University, Chengdu, Sichuan, PR China.

出版信息

Nat Commun. 2025 Mar 12;16(1):2482. doi: 10.1038/s41467-025-57821-7.

Abstract

Commodity polymers are ubiquitous in our society, having replaced many inorganic and metal-based materials due to their versatile properties. However, their functionality heavily relies on the addition of various components known as additives, making it challenging to recycle the polymer fraction of plastic materials effectively. Thus, it is crucial to develop efficient chemical recovery strategies for commodity polymers and additives to facilitate the direct utilization of recovered monomers and additives without additional purification. Here, we develop a strategy for co-upcycling two types of waste commodity polymers, polycarbonate, and polyethylene terephthalate into polyarylate, a high-performance transparent engineering plastic. By incorporating a highly active metal-free ionic liquids catalyst for methanolysis and a two-stage interface polymerization technique with variable temperature control, we successfully prepare polyacrylate film materials from real end-of-life plastics with direct utilization of capping agent impurities in recovered monomers. These materials exhibit excellent thermal performance (Tg = 192.8 °C), transmittance (reach up to 86.73%), and flame-retardant properties (V-0, UL-94), equivalent to those of commercial polyarylate (U-100, about $10000/ton), and could be further easily close-loop recycled. Demonstrated in kilogram-scale experiments and life cycle assessments, this approach offers a low-carbon, environmentally friendly, and economically feasible pathway for upcycling waste commodity polymers.

摘要

通用聚合物在我们的社会中无处不在,由于其多功能特性,已取代了许多无机和金属基材料。然而,它们的功能严重依赖于添加各种称为添加剂的成分,这使得有效回收塑料材料中的聚合物部分具有挑战性。因此,开发高效的通用聚合物和添加剂化学回收策略至关重要,以便在无需额外纯化的情况下直接利用回收的单体和添加剂。在此,我们开发了一种将两种废弃通用聚合物聚碳酸酯和聚对苯二甲酸乙二酯共同升级循环为聚芳酯(一种高性能透明工程塑料)的策略。通过引入用于甲醇解的高活性无金属离子液体催化剂和具有可变温度控制的两阶段界面聚合技术,我们成功地从实际报废塑料中制备了聚芳酯薄膜材料,并直接利用了回收单体中的封端剂杂质。这些材料表现出优异的热性能(玻璃化转变温度Tg = 192.8°C)、透光率(高达86.73%)和阻燃性能(V-0,UL-94),与商业聚芳酯(U-100,约10000美元/吨)相当,并且可以进一步轻松地进行闭环回收。在千克规模的实验和生命周期评估中得到证明,这种方法为废弃通用聚合物的升级循环提供了一条低碳、环保且经济可行的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a12/11903651/06efcc110582/41467_2025_57821_Fig1_HTML.jpg

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