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Study on the hydrogen storage performance mechanism of MgH2 co-modified by rare earth hydride and high entropy hydrogen storage alloy based on in-situ differentiation

Owing to its high hydrogen storage capacity (7.6 wt%), MgH2 is regarded as a highly promising solid-state hydrogen storage material. Nonetheless, its commercialization is constrained by high thermodynamic stability and sluggish hydrogen sorption kinetics. Thus, catalyst introduction is essential to...

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Bibliografiset tiedot
Päätekijät: Haoyuan Zheng, Shuzhong Wang, Chen Jin, Hang Che, Yuqin Zheng, Shixuan He, Haizhen Liu, Lingchao Zhang, Xinhua Wang
Aineistotyyppi: Artigo
Kieli:Inglês
Julkaistu: Elsevier 2025-12-01
Sarja:Materials Today Catalysis
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Linkit:http://www.sciencedirect.com/science/article/pii/S2949754X25000432
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