Principles of Water Electrolysis and Recent Progress in Cobalt‐, Nickel‐, and Iron‐Based Oxides for the Oxygen Evolution Reaction
Принципы электролиза воды и последние достижения в исследовании оксидов на основе кобальта, никеля и железа для реакции выделения кислорода
2021-06-17
SCID: 54.1/s9f786bv
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Co-, Ni-, and Fe-based oxidesOER electrocatalystsgreen hydrogenoxygen evolution reactionwater electrolysis
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Abstract (AI)
Water electrolysis that results in green hydrogen is the key process towards a circular economy. The supply of sustainable electricity and availability of oxygen evolution reaction (OER) electrocatalysts are the main bottlenecks of the process for large-scale production of green hydrogen. A broad range of OER electrocatalysts have been explored to decrease the overpotential and boost the kinetics of this sluggish half-reaction. Co-, Ni-, and Fe-based catalysts have been considered to be potential candidates to replace noble metals due to their tunable 3d electron configuration and spin state, versatility in terms of crystal and electronic structures, as well as abundance in nature. This Review provides some basic principles of water electrolysis, key aspects of OER, and significant criteria for the development of the catalysts. It provides also some insights on recent advances of Co-, Ni-, and Fe-based oxides and a brief perspective on green hydrogen production and the challenges of water electrolysis.
Key Findings
1
Cobalt-, nickel-, and iron-based catalysts are promising noble-metal alternatives because of their tunable 3d electron configurations, spin states, and crystal and electronic structures.
2
Further advances in green hydrogen production require addressing unresolved water-electrolysis challenges alongside catalyst development.
3
Large-scale green hydrogen production is mainly constrained by sustainable electricity supply and the availability of effective oxygen evolution reaction electrocatalysts.
4
Reducing OER overpotential and accelerating its intrinsically sluggish kinetics are central requirements for improving water-electrolysis efficiency.
5
The review summarizes water-electrolysis and OER principles, catalyst-development criteria, and recent progress in cobalt-, nickel-, and iron-based oxide electrocatalysts.
Research Object
Cobalt-, nickel-, and iron-based oxide electrocatalysts for the oxygen evolution reaction in water electrolysis
Research Subject
Their catalytic activity, overpotential, reaction kinetics, and structure–electronic-property criteria for improving the oxygen evolution reaction and enabling green hydrogen production
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2021-06-17
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