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Next-Generation Green Hydrogen: Progress and Perspective from Electricity, Catalyst to Electrolyte in Electrocatalytic Water Splitting. | LitMetric

Article Synopsis

  • Green hydrogen, produced through the electrolysis of water, is gaining attention as a cleaner renewable energy source, but it currently lacks large-scale production systems to compete with fossil fuel-based hydrogen.
  • The review discusses the current state of hydrogen production through water splitting, focusing on the roles of electricity, catalysts, and electrolytes, along with advancements in these areas.
  • It also addresses existing challenges in electrolysis and outlines future directions for the development of green hydrogen technology.

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Article Abstract

Green hydrogen from electrolysis of water has attracted widespread attention as a renewable power source. Among several hydrogen production methods, it has become the most promising technology. However, there is no large-scale renewable hydrogen production system currently that can compete with conventional fossil fuel hydrogen production. Renewable energy electrocatalytic water splitting is an ideal production technology with environmental cleanliness protection and good hydrogen purity, which meet the requirements of future development. This review summarizes and introduces the current status of hydrogen production by water splitting from three aspects: electricity, catalyst and electrolyte. In particular, the present situation and the latest progress of the key sources of power, catalytic materials and electrolyzers for electrocatalytic water splitting are introduced. Finally, the problems of hydrogen generation from electrolytic water splitting and directions of next-generation green hydrogen in the future are discussed and outlooked. It is expected that this review will have an important impact on the field of hydrogen production from water.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11226619PMC
http://dx.doi.org/10.1007/s40820-024-01424-2DOI Listing

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