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September 19, 2025Environmental Science & Technology

Harnessing Fe–Mo Atomic Interfaces for Boosted Electron Transfer and ROS Generation in Sustainable Pollutant Degradation

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Authors

LLLihong LiangJCJiazhen CaoZCZhuan Chen

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Overview

Catalytic system demonstrates over 90% pollutant degradation, suggesting enhanced electron transfer and ROS generation.

Key Points

  • The FeMo0.5-OCN catalyst achieves over 90% phenol degradation within 1 minute, demonstrating remarkable efficiency.
  • Chemical oxygen demand removal shows up to 91% efficiency for phenolic wastewaters, outperforming conventional systems.
  • Density functional theory identifies that molybdenum single atoms enhance adsorption and iron clusters drive PMS activation.
  • Life cycle assessment indicates the system's superior sustainability and cost-effectiveness compared to traditional Fenton processes.

Cite This Study

Liang et al. (2025) studied this question.

synapsesocial.com/papers/68d464ea31b076d99fa64210https://doi.org/10.1021/acs.est.5c06307
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