JOURNAL ARTICLE

Tailored Metal–OxygenInterface Engineeringof Self-Assembled CoMn Spinel Nanocatalysts for Singlet Oxygen-MediatedPeroxymonosulfate Activation and Pollutant Degradation

Xiaorui Zhang (5196983)Jingdan Gao (21694019)Yonggang Sun (5594126)

Year: 2025 Journal:   OPAL (Open@LaTrobe) (La Trobe University)   Publisher: La Trobe University

Abstract

Cobalt-based heterogeneous catalysts have emerged as high-performance activators of peroxymonosulfate (PMS) for advanced oxidation processes targeting pharmaceutical contaminants. This work presents a morphology-engineered spinelloid phase (g-CoMn2O4) synthesized through a glycerol-modulated crystallization strategy, exhibiting a 3D hierarchical nanofloral architecture with enhanced interfacial active sites. Remarkable tetracycline (TC) degradation efficiency of 98.90% was achieved within 10 min (k = 1.19 min–1), representing a 3.6-fold enhancement in degradation capacity and a 21.5-fold acceleration in reaction kinetics compared with pristine PMS systems. Atomic-level characterization revealed that Mn3+/Mn4+ doping optimizes electron transfer networks and promotes Co2+/Co3+ redox cycling, thereby boosting PMS utilization efficiency (ηPMS = 82.7%). Multipathway activation mechanisms were quantitatively decoupled through spin-trapping EPR and chemical quenching studies, identifying 1O2-dominated nonradical oxidation with supplementary contributions from SO4 and ·OH. LC-MS analysis mapped three primary degradation pathways involving demethylation, hydroxylation, and ring-opening reactions, with TEST predictions confirming detoxification of transformation products. This structure–activity relationship study provides molecular-level insights for the rational design of transition metal catalysts in emerging contaminant remediation.

Keywords:
Degradation (telecommunications) Catalysis Spinel Nanomaterial-based catalyst Redox Rational design Singlet oxygen Kinetics Quenching (fluorescence)

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Topics

Advanced oxidation water treatment
Physical Sciences →  Environmental Science →  Water Science and Technology
Catalytic Processes in Materials Science
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
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