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February 12, 2026Angewandte Chemie International Edition0 citations

Aqua‐Oxidation of Polyethylene Into Carboxylic Acids Under Mild Conditions: A Catalyst‐Free Upcycling Strategy for Nonpolar Plastics

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YCYinlong ChangWGWeiqiang GaoSWSen Wang

Key Points

  • The aim is to develop a catalyst-free method for converting polyethylene into carboxylic acids under mild conditions.
  • Developed aqua-oxidation strategy at 160°C
  • Utilized isotope-labeled D2O in liquid-phase spectroscopy
  • Investigated the roles of H2O and O2 in the oxidation process
  • Optimized process for diverse commercial polyolefins
  • Achieved up to 97.8 wt% mass yield of carboxylic acids
  • 72.1% of the yield consisted of C4-C10 dicarboxylic acids
  • Demonstrated effective initiation of oxidation by O2
  • Showed H2O as a medium to enhance interaction and selectivity

Abstract

ABSTRACT Noncatalytic polyolefin upcycling offers distinct advantages in eliminating catalyst costs and enhancing operational stability, yet it remains highly challenging under mild conditions. Herein, we develop an aqua‐oxidation strategy that converts polyethylene into carboxylic acids at 160°C without using any catalysts or organic solvents. The mass yield of carboxylic acid is up to 97.8 wt%, of which 72.1% is comprised by C 4 –C 10 dicarboxylic acids. The roles of H 2 O and O 2 play in aqua‐oxidation were further investigated in an in situ liquid‐phase spectroscopic reactor filled with isotope‐labeled D 2 O. It reveals that O 2 governs the effective initiation and oxidation of polyethylene. Whereas H 2 O serves as a key medium to intensify oxygen–polyethylene interaction uniformly and inhibit localized oxidation, promoting selective upcycling to narrow‐distributed acids. Moreover, this strategy allows for upcycling diverse commercial polyolefins with additives. This study presents a breakthrough in the noncatalytic upcycling of polyolefins under mild conditions and demonstrates the potential of this eco‐friendly and streamlined strategy for advancing plastic circularity.

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Cite This Study

Chang et al. (2026) studied this question.

synapsesocial.com/papers/698d6e5a5be6419ac0d53f2ahttps://doi.org/10.1002/anie.202523067
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