fig3

Acidic oxygen evolution reaction via lattice oxygen oxidation mechanism: progress and challenges

Figure 3. OER performance in solutions with and without TMA: (A) Fe-Co(OH)2/Fe2O3 (Copyright 2020, John Wiley and Sons[71]); Plot of OER performance in electrolytes at different pH solution conditions and the corresponding logarithm of current density versus OER path: (B-C) Fe-Co(OH)2/Fe2O3 (Copyright 2020, John Wiley and Sons[71]); (D) B, Fe-CoP (Copyright 2024, John Wiley and Sons[81]); (E-F) B, Fe-CoP (Copyright 2024, John Wiley and Sons[81]); (G) IrOx/Y2O3 (Copyright 2023, John Wiley and Sons[82]); (H-I) IrOx/Y2O3 (Copyright 2023, John Wiley and Sons[82]). OER: Oxygen generation reaction; TMA: TetraMethylAmmonium.

Energy Materials
ISSN 2770-5900 (Online)
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