🛰️ Daily AI Frontier
‹ back to 2026-07-27

「国家杰青」潘洪革领衔!西安工业大学王新强/崔文岗最新AEM丨Ru高熵团簇稳AEM电解水!

Research Green Hydrogen

Ranking

Overall 52
Content 55
Popularity 44

Observed public metrics from 1 member.

Representative image for 「国家杰青」潘洪革领衔!西安工业大学王新强/崔文岗最新AEM丨Ru高熵团簇稳AEM电解水!

Merged summary

TL;DR - Researchers developed sub-nanometer Ru-based high-entropy clusters embedded in CeO₂ for efficient, durable anion-exchange-membrane water electrolysis. The catalyst combines strong alkaline hydrogen-evolution performance with stability under continuous and intermittent operation.

  • RuMnCoNiMo clusters required 25 and 66 mV overpotential to reach 10 and 100 mA cm⁻² in 1.0 M KOH.
  • Ru–O–Ce interfaces promote water dissociation, optimize hydrogen adsorption, and reduce hydroxyl poisoning.
  • High-entropy stabilization and CeO₂ confinement suppress cluster migration, aggregation, and degradation.
  • The electrolyzer reached 2.0 A cm⁻² at 1.95 V and operated for 1,300 hours with minimal decay.

Sources (1)

「国家杰青」潘洪革领衔!西安工业大学王新强/崔文岗最新AEM丨Ru高熵团簇稳AEM电解水!

WeChat: 科研圈 2026-07-25 doi:10.1002/aenm.71337
Public signals OpenAlex citations 0
Providers: Hugging Face · N/A OpenAlex · Citations 0 Publisher · N/A Semantic Scholar · N/A X · N/A Fetched 2026-08-26 14:44:51.746273 UTC

TL;DR - Researchers developed sub-nanometer Ru-based high-entropy clusters embedded in CeO₂ for efficient, durable anion-exchange-membrane water electrolysis. The catalyst combines strong alkaline hydrogen-evolution performance with stability under continuous and intermittent operation.

  • RuMnCoNiMo clusters required 25 and 66 mV overpotential to reach 10 and 100 mA cm⁻² in 1.0 M KOH.
  • Ru–O–Ce interfaces promote water dissociation, optimize hydrogen adsorption, and reduce hydroxyl poisoning.
  • High-entropy stabilization and CeO₂ confinement suppress cluster migration, aggregation, and degradation.
  • The electrolyzer reached 2.0 A cm⁻² at 1.95 V and operated for 1,300 hours with minimal decay.
item →