Efficient hydrogen production on MoNi4 electrocatalysts with fast water dissociation kinetics
Эффективное получение водорода на электрокатализаторах MoNi₄ с быстрой кинетикой диссоциации воды
2017-05-17
SCID: 54.1/d38svxc3
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MoNi4 electrocatalystTafel slopealkaline water electrolysishydrogen evolution reactionwater dissociation kinetics
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Abstract (AI)
Abstract Various platinum-free electrocatalysts have been explored for hydrogen evolution reaction in acidic solutions. However, in economical water-alkali electrolysers, sluggish water dissociation kinetics (Volmer step) on platinum-free electrocatalysts results in poor hydrogen-production activities. Here we report a MoNi 4 electrocatalyst supported by MoO 2 cuboids on nickel foam (MoNi 4 /MoO 2 @Ni), which is constructed by controlling the outward diffusion of nickel atoms on annealing precursor NiMoO 4 cuboids on nickel foam. Experimental and theoretical results confirm that a rapid Tafel-step-decided hydrogen evolution proceeds on MoNi 4 electrocatalyst. As a result, the MoNi 4 electrocatalyst exhibits zero onset overpotential, an overpotential of 15 mV at 10 mA cm −2 and a low Tafel slope of 30 mV per decade in 1 M potassium hydroxide electrolyte, which are comparable to the results for platinum and superior to those for state-of-the-art platinum-free electrocatalysts. Benefiting from its scalable preparation and stability, the MoNi 4 electrocatalyst is promising for practical water-alkali electrolysers.
Key Findings
1
A MoNi4/MoO2@Ni electrocatalyst was fabricated on nickel foam by controlling outward nickel diffusion during annealing of NiMoO4 cuboids.
2
Experimental and theoretical analyses show that MoNi4 enables rapid hydrogen evolution governed by the Tafel step, overcoming sluggish water dissociation kinetics.
3
In 1 M potassium hydroxide, the catalyst achieves zero onset overpotential, 15 mV overpotential at 10 mA cm−2, and a 30 mV per decade Tafel slope.
4
Its hydrogen-evolution performance is comparable to platinum and superior to state-of-the-art platinum-free electrocatalysts.
5
Scalable preparation and demonstrated stability make MoNi4 promising for practical alkaline water electrolysers.
Research Object
MoNi4 electrocatalyst supported by MoO2 cuboids on nickel foam (MoNi4/MoO2@Ni) for alkaline hydrogen evolution
Research Subject
Hydrogen-evolution activity and kinetics, particularly water-dissociation and Tafel-step kinetics, including onset overpotential, overpotential, and Tafel slope
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2017-05-17
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