材料科学
铂金
制氢
催化作用
磷化物
电解质
化学工程
氢
贵金属
聚合物
纳米技术
膜
金属
电极
化学
冶金
复合材料
有机化学
物理化学
工程类
生物化学
作者
Laurie A. King,McKenzie A. Hubert,Christopher Capuano,Judith Manco,Nemanja Danilovic,Eduardo Valle,Thomas R. Hellstern,Katherine E. Ayers,Thomas F. Jaramillo
标识
DOI:10.1038/s41565-019-0550-7
摘要
We demonstrate the translation of a low-cost, non-precious metal cobalt phosphide (CoP) catalyst from 1 cm2 lab-scale experiments to a commercial-scale 86 cm2 polymer electrolyte membrane (PEM) electrolyser. A two-step bulk synthesis was adopted to produce CoP on a high-surface-area carbon support that was readily integrated into an industrial PEM electrolyser fabrication process. The performance of the CoP was compared head to head with a platinum-based PEM under the same operating conditions (400 psi, 50 °C). CoP was found to be active and stable, operating at 1.86 A cm−2 for >1,700 h of continuous hydrogen production while providing substantial material cost savings relative to platinum. This work illustrates a potential pathway for non-precious hydrogen evolution catalysts developed in past decades to translate to commercial applications. A non-precious metal cobalt phosphide hydrogen evolution catalyst is found to be active and durable in a commercial-scale polymer electrolyte membrane electrolyser.
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