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Amorphous–crystalline FeNi<sub>2</sub>S<sub>4</sub>@NiFe–LDH nanograsses with molten salt as an industrially promising electrocatalyst for oxygen evolution
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Citations
51
References
2022
Year
EngineeringS 4Nanoheterogeneous CatalysisChemistryInorganic MaterialCrystalline Feni 2Molten SaltChemical EngineeringRedox ChemistryOxygen Evolution ReactionMaterials ScienceInorganic ChemistryPromising ElectrocatalystCatalysisElectrochemical ProcessElectrochemistryOxygen Reduction ReactionHeterogeneous CatalysisWater ElectrolysisOxygen EvolutionFunctional Materials
The hydrolysis of S ion FeNi 2 S 4 can promote the in-situ formation of ultrathin amorphous NiFe–LDH grown in situ on crystalline FeNi 2 S 4 , which can not only improve activity but also significantly enhance stability for oxygen evolution reaction.
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