材料科学
催化作用
聚酯纤维
单体
解聚
双功能
聚对苯二甲酸乙二醇酯
化学工程
光热治疗
聚合物
乙烯
纳米技术
双金属片
聚合
纳米网
纳米纤维
高分子化学
聚乳酸
热解
光热效应
作者
Haoyi Wang,Le Xu,Chunying Si,Yan‐Kai Zhang,Yunbiao Qi,Quanxing Zhang,Wei Jiang
出处
期刊:Small
[Wiley]
日期:2025-12-17
卷期号:22 (8): e13604-e13604
被引量:3
标识
DOI:10.1002/smll.202513604
摘要
Abstract Mixed polyester wastes with different chemical structures remain a key obstacle to achieving circularity in plastic utilization. Here, a programmable one‐pot photothermal strategy is reported using a catalyst derived from a bimetallic MOF (Zn/Co‐ZIF‐C) through pyrolysis of a Zn/Co‐integrated precursor. This system enables the efficient and sequential depolymerization of polycarbonate (PC), polylactic acid (PLA), and polyethylene terephthalate (PET) in mixed streams by simply tuning the irradiation intensity. Selective glycolysis of PC, PLA, and PET is triggered at ≈420, 520, and 650 mW cm −2 , respectively, enabling stepwise monomer recovery in a single reactor. Density functional theory calculations reveal a dual‐site cooperative mechanism, in which ZnO and Co‐N x sites cooperatively activate ester bonds and ethylene glycol, offering a mechanistic basis for the observed substrate‐specific reactivity. The Zn/Co‐ZIF‐C catalyst exhibits broadband light absorption, strong catalytic activity, and excellent recyclability, maintaining over 95% PET conversion across five cycles. Moreover, it achieves monomer yields above 80% from nine real‐world post‐consumer plastics, while simultaneously removing dyes and performing magnetic separation. This work presents a robust and scalable catalytic platform for light‐controlled, selective upcycling of complex polyester mixtures, offering new opportunities for sustainable plastic circularity.
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