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The Identity of Nickel Peroxide as a Nickel Superoxyhydroxide for Enhanced Electrocatalysis

Yizhou Yang, Jili Li, Chong Li, Ming Gong, Xue Wang, Xuejing Yang, Hualin Wang, Yefei Li, Zhi‐Pan Liu

2023JACS Au15 citationsDOIOpen Access PDF

Abstract

Nickel peroxides are a class of stoichiometric oxidants that can selectively oxidize various organic compounds, but their molecular level structure remained elusive until now. Herein, we utilized structural prediction using the Stochastic Surface Walking method based on a neural network potential energy surface and advanced characterization using the as-synthesized nickel peroxide to unravel its chemical identity as the bridging superoxide containing nickel hydroxide, or nickel superoxyhydroxide. Superoxide incorporation tunes the local chemical environment of nickel and oxygen beyond the conventional Bode plot, offering a 6.4-fold increase in the electrocatalytic activity of urea oxidation. A volcanic dependence of the activity on the oxygen equivalents leads to the proposed active site of the Ni(OO)(OH)Ni five-membered ring. This work not only unveils the possible structures of nickel peroxides but also emphasizes the significance of tailoring the oxygen environment for advanced catalysis.

Topics & Concepts

NickelElectrocatalystPeroxideCatalysisChemistryHydroxideSuperoxideInorganic chemistryOxygenHydrogen peroxidePhotochemistryElectrochemistryOrganic chemistryPhysical chemistryEnzymeElectrodeElectrocatalysts for Energy ConversionMachine Learning in Materials ScienceAdvanced Photocatalysis Techniques
The Identity of Nickel Peroxide as a Nickel Superoxyhydroxide for Enhanced Electrocatalysis | Litcius