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Rational Design of Better Hydrogen Evolution Electrocatalysts for Water Splitting: A Review

期刊

ADVANCED SCIENCE
卷 9, 期 18, 页码 -

出版社

WILEY
DOI: 10.1002/advs.202200307

关键词

catalyst design; extrinsic effects; hydrogen evolution reaction; intrinsic effects; water-splitting technology

资金

  1. National Key R&D Program of China [2020YFA0710000]
  2. National Natural Science Foundation of China [2200080551, 21978200, 22161142002, 22121004]

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This review introduces the design principles of hydrogen evolution reaction (HER) electrocatalysts, including thermodynamics, kinetics, and structural descriptors. It also discusses the reasonable design, preparation, mechanistic understanding, and performance enhancement of electrocatalysts. Furthermore, it briefly discusses recent advancements in the electrocatalytic water splitting technology and proposes the challenges and perspectives in developing highly efficient hydrogen evolution electrocatalysts.
The excessive dependence on fossil fuels contributes to the majority of CO2 emissions, influencing on the climate change. One promising alternative to fossil fuels is green hydrogen, which can be produced through water electrolysis from renewable electricity. However, the variety and complexity of hydrogen evolution electrocatalysts currently studied increases the difficulty in the integration of catalytic theory, catalyst design and preparation, and characterization methods. Herein, this review first highlights design principles for hydrogen evolution reaction (HER) electrocatalysts, presenting the thermodynamics, kinetics, and related electronic and structural descriptors for HER. Second, the reasonable design, preparation, mechanistic understanding, and performance enhancement of electrocatalysts are deeply discussed based on intrinsic and extrinsic effects. Third, recent advancements in the electrocatalytic water splitting technology are further discussed briefly. Finally, the challenges and perspectives of the development of highly efficient hydrogen evolution electrocatalysts for water splitting are proposed.

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