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September 10, 2025Nature Communications73 citationsOpen Access

Insights into free radical and non-radical routes regulation for water cleanup

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YZYi ZhouWGWenxuan GuoYLYanpan Li

Key Points

  • The study demonstrates that tuning the calcination temperature significantly influences oxidation pathways.
  • Incorporating single metal atoms results in a dominant non-radical oxidation process, enhancing pollutant degradation.
  • The NC-FeMn(TA)/PMS system effectively removes emerging pollutants, achieving 100% degradation after 22 cycles.
  • Control of oxidation pathways is essential for efficient water purification, indicating a promising approach for wastewater treatment.

Abstract

In the field of wastewater treatment, the regulation of free radical and non-radical routes has been one of the major challenges. This study investigates the regulation of radical and non-radical oxidation pathways in the peroxymonosulfate (PMS) oxidation system by controlling the calcination temperature of carbon materials and constructing bimetallic single-atom catalysts (NC-FeMn(TA)). Density functional theory calculations and experimental tests indicate that increasing the pyridinic nitrogen content and incorporating single metal atoms in nitrogen-doped carbon materials result in a predominantly non-radical oxidation process. In contrast, enhancing the content of graphitic and pyrrolic nitrogen species and introducing bimetallic catalytic centers promote a radical oxidation pathway. The NC-FeMn(TA)/PMS system demonstrates high oxidation performance over a broad pH range, exhibiting significant interference resistance and stability, with 100% degradation of target pollutants after 22 cycles and complete removal of emerging pollutants (including pharmaceuticals and personal care products, endocrine disrupting chemicals, dyes and chemical materials) within 5 min. This system's remarkable performance suggests broad application potential in water pollution control field. Controlling oxidation pathways is crucial for efficient water purification. Here, authors develop Fe/Mn single-atom catalysts that tune radical and non-radical processes, enabling rapid, robust degradation of pollutants and offering broad potential for wastewater treatment.

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Cite This Study

Zhou et al. (2025) studied this question.

synapsesocial.com/papers/68c1cc2e54b1d3bfb60f449dhttps://doi.org/10.1038/s41467-025-63235-2
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