Dynamic Reconstruction of Metal–Organic Framework and Metal–Organic Framework‐Derived Electrocatalysts for Bifunctional Oxygen Electrocatalysis in Alkaline Energy Devices

ABSTRACT Alkaline oxygen reduction reaction (ORR)/OER bifunctionality is central to rechargeable Zn–air batteries, reversible fuel cells and regenerative electrolysis. These technologies are promising for mitigating carbon emissions resulting from fossil fuel energy dependency, driving the energy sector towards a carbon‐neutral energy cycle. Due to their excellent intrinsic activity, metal–organic frameworks (MOFs) and their derivatives have emerged as promising materials for bifunctional oxygen electrocatalysis. Despite their great activity, MOFs often transform under operating potential. The key unresolved issue is identifying the true active phase and linking precursor structure to reconstructed active sites. This review highlights the use of MOF‐based electrocatalysts, their reconstruction and stability during bifunctional electrocatalysis for ORR and OER in alkaline medium. Pristine MOFs, conductive MOFs, MOF composites and MOF‐derived carbons/oxides/phosphides/sulphides are critically compared. It further proposes design rules based on conductivity, metal‐node chemistry, ligand‐derived heteroatom doping, porosity, active‐site reconstruction and device‐level validation. A comprehensive summary of the progress in MOF‐based and MOF‐derived electrocatalysts for ORR and OER, from design to future perspectives, is presented, with possible solution strategies for future design and preparation.

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Publication Details

Journal
Electrochemical Science Advances
Published
2026-09-30
DOI
https://doi.org/10.1002/elsa.70043
Primary Topic
Electrocatalysts for Energy Conversion
Type
article
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Dynamic Reconstruction of Metal–Organic Framework and Metal–Organic Framework‐Derived Electrocatalysts for Bifunctional Oxygen Electrocatalysis in Alkaline Energy Devices

Tebogo Abigail Mashola, Thabo Matthews, Rhiyaad Mohamed, Rudzani Sigwadi et al.
Electrochemical Science Advances
Electrocatalysts for Energy Conversion
article

Dynamic Reconstruction of Metal–Organic Framework and Metal–Organic Framework‐Derived Electrocatalysts for Bifunctional Oxygen Electrocatalysis in Alkaline Energy Devices

Tebogo Abigail Mashola, Thabo Matthews, Rhiyaad Mohamed, Rudzani Sigwadi, Charles Muzenda
article en

Abstract

ABSTRACT Alkaline oxygen reduction reaction (ORR)/OER bifunctionality is central to rechargeable Zn–air batteries, reversible fuel cells and regenerative electrolysis. These technologies are promising for mitigating carbon emissions resulting from fossil fuel energy dependency, driving the energy sector towards a carbon‐neutral energy cycle. Due to their excellent intrinsic activity, metal–organic frameworks (MOFs) and their derivatives have emerged as promising materials for bifunctional oxygen electrocatalysis. Despite their great activity, MOFs often transform under operating potential. The key unresolved issue is identifying the true active phase and linking precursor structure to reconstructed active sites. This review highlights the use of MOF‐based electrocatalysts, their reconstruction and stability during bifunctional electrocatalysis for ORR and OER in alkaline medium. Pristine MOFs, conductive MOFs, MOF composites and MOF‐derived carbons/oxides/phosphides/sulphides are critically compared. It further proposes design rules based on conductivity, metal‐node chemistry, ligand‐derived heteroatom doping, porosity, active‐site reconstruction and device‐level validation. A comprehensive summary of the progress in MOF‐based and MOF‐derived electrocatalysts for ORR and OER, from design to future perspectives, is presented, with possible solution strategies for future design and preparation.

Electrochemical Science AdvancesVol. 6(5)
University of South Africa (ZA), University of Johannesburg (ZA), Institute of Catalysis and Petrochemistry (RU)
Openalex Percentile: Top 31%
Electrocatalysts for Energy Conversion
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Dynamic Reconstruction of Metal–Organic Framework and Metal–Organic Framework‐Derived Electrocatalysts for Bifunctional Oxygen Electrocatalysis in Alkaline Energy Devices — Tebogo Abigail Mashola, Thabo Matthews, et al. · Electrochemical Science Advances (2026) | TGRS Research Map | TGRS