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Self-Supported Nickel Phosphide Electrode for Efficient Alkaline Water-to-Hydrogen Conversion via Urea Electrolysis

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Electrochemical water splitting is an attractive technique to produce renewable hydrogen gas. However, considerable challenges remain before the catalytic anodic oxygen evolution reaction (OER) can... Click to show full abstract

Electrochemical water splitting is an attractive technique to produce renewable hydrogen gas. However, considerable challenges remain before the catalytic anodic oxygen evolution reaction (OER) can...

Keywords: water; nickel phosphide; hydrogen; supported nickel; phosphide electrode; self supported

Journal Title: Industrial & Engineering Chemistry Research
Year Published: 2021

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