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The Synthesis of Nanostructured Ni<sub>5</sub>P<sub>4</sub> Films and their Use as a Non‐Noble Bifunctional Electrocatalyst for Full Water Splitting

Angewandte Chemie · 2015 · Vol. 127(42) · pp. 12538–12542
Marc LedendeckerSandra Krick CalderónChristian PappHans‐Peter SteinrückMarkus AntoniettiMenny Shalom

Abstract

The investigation of nickel phosphide (Ni5 P4 ) as a catalyst for the hydrogen (HER) and oxygen evolution reaction (OER) in strong acidic and alkaline environment is described. The catalyst can be grown in a 3D hierarchical structure directly on a nickel substrate, thus making it an ideal candidate for practical water splitting devices. The activity of the catalyst towards the HER, together with its high stability especially in acidic solution, makes it one of the best non-noble materials described to date. Furthermore, Ni5 P4 was investigated in the OER and showed activity superior to pristine nickel or platinum. The practical relevance of Ni5 P4 as a bifunctional catalyst for the overall water splitting reaction was demonstrated, with 10 mA cm(-2) achieved below 1.7 V.

Electrocatalysts for Energy ConversionAdvanced battery technologies researchFuel Cells and Related MaterialsBifunctionalWater splittingElectrocatalystPhosphideCatalysisNickelOxygen evolutionPlatinumInorganic chemistrySubstrate (aquarium)
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References
Hydrogen futures: toward a sustainable energy system
International Journal of Hydrogen Energy · 2002 · 1,479 citations
Nanostructured Nickel Phosphide as an Electrocatalyst for the Hydrogen Evolution Reaction
Journal of the American Chemical Society · 2013 · 2,850 citations
Benchmarking Heterogeneous Electrocatalysts for the Oxygen Evolution Reaction
Journal of the American Chemical Society · 2013 · 6,638 citations
An Investigation of Thin-Film Ni–Fe Oxide Catalysts for the Electrochemical Evolution of Oxygen
Journal of the American Chemical Society · 2013 · 2,679 citations
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