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Author Correction: Electrified interfacial oxygen-down water boosts efficient and durable electrolysis
Correction to: Nature Communications https://doi.org/10.1038/s41467-026-70737-0, published online 23 March 2026 In the version of the article initially published, the units in Fig. 2b were “mF cm−2” but should have been “mV dec−1”. The figure has now been corrected in the HTML and PDF versions of the article.
Electrified interfacial oxygen-down water boosts efficient and durable electrolysis
Abstract The oxygen evolution reaction proceeds through proton-coupled electron transfers, mastering interfacial proton dynamics is therefore the critical nexus for simultaneously achieving high catalytic activity and long-term stability. Herein, we establish an oxygen-down water adlayer (H2O ↓ ) that concurrently optimizing initial water deprotonation and subsequent proton transport.
Elongated M-O Bonds Facilitate Dynamic Active Phase Reconfiguration for Enhanced Water Electrolysis Efficiency
Abstract Click to copy section linkSection link copied! Controlling active phase reconstruction is critical for enhancing the oxygen evolution reaction (OER) performance in water electrolysis. In this study, a series of catalysts D-Ni/NiMO (M = Fe, Co, Mn) with varying M–O bond lengths were synthesized using nickel oxide as a model electrocatalyst. Among them, Ni/NiCoO, featuring the longest M–O bond length, received particular attention.
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