Ultradense carbon-encapsulated Co2P chainmail catalyst embedded within hierarchically porous monolithic carbon matrix for superior alkaline electrocatalytic water splitting

While carbon-encapsulated transition metal-based chainmail electrocatalysts in powdery forms have shown impressive electrocatalytic activity toward water splitting, their performance is often restricted by the insufficient catalytic active sites and stability. Herein, a monolithic carbon-based bifun...

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Veröffentlicht in:Renewable energy 2024-12, Vol.236, p.121383, Article 121383
Hauptverfasser: Min, Shixiong, Zhao, Yaoyao, Meng, Zhe, Wang, Fang, Li, Wenjing, Zhang, Zhengguo
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Sprache:eng
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Zusammenfassung:While carbon-encapsulated transition metal-based chainmail electrocatalysts in powdery forms have shown impressive electrocatalytic activity toward water splitting, their performance is often restricted by the insufficient catalytic active sites and stability. Herein, a monolithic carbon-based bifunctional electrocatalyst is fabricated by embedding ultradense N, P-codoped carbon-encapsulated Co2P nanoparticles (
ISSN:0960-1481
DOI:10.1016/j.renene.2024.121383