Deep reconstruction of Ni-doped CoOOH under industrial conditions for efficient oxygen evolution

Bin Liu, Xin Liu,Feng-Ge Wang,Wen-Jing Li,Na Xu, Zhi-Jie Zhang,Qian-Xi Lv, Yong-Ming Chai,Bin Dong

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY(2024)

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摘要
Hydrogen production by water electrolysis is considered to be economical and environmentally friendly. Encouraging the reconstruction of electrocatalysts during the oxygen evolution reaction (OER), which produces a large number of active species with high activity, might be viewed as a promising technique for increased activity. In this work, thermally induced complete reconstructions (TICR) are used to create (oxy)hydroxide with low crystallinity and abundant boundary/vacancy from molybdate precatalysts. The obtained Ni-doped CoOOH (CMO1200-90/NF) with boundary/vacancy demonstrates the efficient electrocatalytic activity for OER. An oxygen precipitation overpotential of 299 mV (100 mA cm-2) is exhibited, while the durability of this structure is verified in a strong corrosive environment (1 M KOH) with a long-term stability of 100 h. Compared with Nidoped CoMoO4 precatalyst, the overpotential is reduced by 102 mV at 100 mA cm-2. During the hydrothermal process, trace amounts of Ni elements are doped and have a synergistic effect with Co to induce the modulation of electronic structure. This work investigates the phenomenon of thermally induced and highlights the commercial potential of deep reconstruction catalysts in high-temperature water electrolysis.(c) 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
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关键词
Oxygen evolution reaction,Cobalt molybdate,Cobalt hydroxide,Deep reconstruction
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