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Updated: Mar 14, 2026

Depolymerizable Olefinic Polymers Based on Fused-Ring Cyclooctene Monomers
Published on: December 16, 2022
Interfacial configurational entropy tuning strategy enabling liquid alloys for efficient depolymerization of
Chaoping Xu1, Haoyu Yan1, Pengxuan Wang1
1Key Laboratory of Ocean Energy Utilization and Energy Conservation of the Ministry of Education, School of Power and Energy Engineering, Dalian University of Technology, Dalian, China.
None:
Accumulation of plastic waste presents a global environmental crisis, posing severe threats to ecosystems. Depolymerization offers a promising route for closed-loop recycling of plastic waste. Nevertheless, depolymerizing chemically stable polyolefins remains challenging, yet fails to achieve high light olefin yields and stability. Herein, we propose an interfacial configurational entropy tuning strategy for liquid alloy catalysts, inducing active site interfacial enrichment and optimizing electronic structure. With this strategy, a quaternary GaInNiSn catalyst with medium entropy is developed for recycling polyolefins into light olefins under atmospheric pressure without co-reactant consumption, achieving a space-time yield of 181.5 mmol gcat⁻1 h⁻1. Mechanistic insights reveal that Niδ⁻-Snδ+ active sites form within the dynamic Ga interface, enabling C-H bond activation to promote β-scission. Furthermore, a photovoltaics-driven depolymerization system is constructed, maintaining light olefin output of 52.8 L h⁻1 over 120 hours. Our work unlocks a potent tool for efficient and sustainable plastic waste utilization.
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