MOF-derived high-entropy antiperovskite carbonitrides for efficient oxygen evolution
Abstract
We report a MOF-derived senary high-entropy antiperovskite carbonitride delivering exceptional oxygen evolution performance (264 mV at 10 mA cm -2). Crucially, this conductive precatalyst undergoes in situ surface reconstruction during anodic polarization, forming an active amorphous M-OOH shell that successfully triggers the highly efficient lattice oxygen-mediated (LOM) pathway.
- This article is part of the themed collection: ChemComm Electrocatalysis
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