A non-precious metal hydrogen catalyst in a commercial polymer electrolyte membrane electrolyser

被引:0
作者
Laurie A. King
McKenzie A. Hubert
Christopher Capuano
Judith Manco
Nemanja Danilovic
Eduardo Valle
Thomas R. Hellstern
Katherine Ayers
Thomas F. Jaramillo
机构
[1] Stanford University,Department of Chemical Engineering, Shriram Center
[2] SLAC National Accelerator Laboratory,SUNCAT Center for Interface Science and Catalysis
[3] Nel Hydrogen/Proton OnSite,undefined
[4] Lawrence Berkeley National Lab,undefined
来源
Nature Nanotechnology | 2019年 / 14卷
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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.
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页码:1071 / 1074
页数:3
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