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DOE OSTI · 1986317

Depolymerization of polyesters by a binuclear catalyst for plastic recycling

Abstract

Plastics play an essential role in modern society, however, the relentless growth of their production is threatening both human health and ecosystems. As a result, there are intensive efforts in developing recycling technologies to repurpose waste plastics into the building blocks for valuable materials. Here we show a binuclear complex that can catalyze the degradation of polyethylene terephthalate (PET)-the most widely used polyester globally-and a wide spectrum of other plastics including polylactic acid (PLA), polybutylene adipate terephthalate (PBAT), polycaprolactone (PCL), polyurethane (PU) and Nylon 66. Inspired by hydrolases, the group of enzymes that catalyze bond cleavages with water, the present catalyst design features biomimetic Zn-Zn sites which activate the plastic, stabilize the key intermediate, and enable intramolecular hydrolysis. This synthetic catalyst delivers activities of 36 mg PET d -1 g catal -1 toward PET depolymerization at pH 8 and 40 oC, and of 577 g PET d -1 g catal -1 at pH 13 and 90 oC for scalable PET recycling. We further demonstrate the closed-loop production of a bottle-grade PET. This work presents a practical and viable solution to the sustainable management of plastics waste.

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BibTeXRIS

Zhang, Shengbo, Hu, Qikun, Zhang, Yu-Xiao, Guo, Haoyue, Wu, Yanfen, Sun, Mingze, Zhu, Xingsong, Zhang, Jiangang, Gong, Shuyan, Liu, Ping, Niu, Zhiqiang. 2023-05-01. Depolymerization of polyesters by a binuclear catalyst for plastic recycling. https://doi.org/10.1038/s41893-023-01118-4

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