Zhang Lipeng, Zhang Juntao, Fang Jinjie, Wang Xin-Yu, Yin Likun, Zhu Wei, Zhuang Zhongbin
State Key Lab of Organic-Inorganic Composites and Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.
Comprehensive Energy Research Center, Institute of Science and Technology, China Three Gorges Corporation, Beijing, 100038, China.
Small. 2021 Jul;17(28):e2100832. doi: 10.1002/smll.202100832. Epub 2021 Jun 12.
Developing highly efficient, low-cost electrocatalysts with long-time stability at high current density working conditions for hydrogen evolution reaction (HER) remains a great challenge for the large-scale commercialization of hydrogen production from water electrolysis. Herein, the Cr-doped CoP nanorod arrays on carbon cloth (Cr-CoP-NR/CC) is reported as high performance HER catalysts with overpotentials of 38 and 209 mV at the HER current densities of 10 and 500 mA cm , respectively, outperforming the performance of the commercial Pt/C at high current density. And its HER performance shows almost no loss after 20 h working at 500 mA cm . The high performance is attributed to the Cr doping, which optimizes the hydrogen binding energy of CoP and prevents its oxidation. The nanorod array structure helps the escaping of the generated hydrogen gas, which is suitable for working at high current density. The obtained Cr-CoP-NR/CC catalyst shows the potential to replace the costly Pt-based HER catalysts in the water electrolyzer.
开发出在高电流密度工作条件下具有长期稳定性的高效、低成本析氢反应(HER)电催化剂,对于水电解制氢的大规模商业化而言仍是一项巨大挑战。在此,报道了碳布上的Cr掺杂CoP纳米棒阵列(Cr-CoP-NR/CC)作为高性能HER催化剂,在HER电流密度分别为10和500 mA cm时,过电位分别为38和209 mV,在高电流密度下优于商业Pt/C的性能。并且其HER性能在500 mA cm下工作20小时后几乎没有损失。这种高性能归因于Cr掺杂,它优化了CoP的氢结合能并防止其氧化。纳米棒阵列结构有助于生成的氢气逸出,适合在高电流密度下工作。所获得的Cr-CoP-NR/CC催化剂显示出在水电解槽中替代昂贵的Pt基HER催化剂的潜力。