Theoretical data mining for the production of singlet oxygen through MN4 Catalyst. Credit: Angewandte chemie international version (2025). Doi: 10.1002/AIE.202500004

FE-SACS Fanton-like catalytic performance. Credit: Angewandte chemie international version (2025). Doi: 10.1002/AIE.202500004

Accurate synthesis and characterization of M-SACS. Credit: Angewandte chemie international version (2025). Doi: 10.1002/AIE.202500004
Citation: Data-driven approach accelerates single-atom catalyst development for water purification (2025, 17 February)
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