Synthesis, structure and electrochemical performance of an ultra-high-entropy rare earth orthoferrite (UHE REO) for overall water splitting (OWS)
Bui Manh Long,
Thanh Son Cam,
Anna S. Seroglazova
et al.
Abstract:Using the two-step solution combustion method, nanocrystals of ultra-high-entropy rare-earth orthoferrite (UHE REO) were synthesized and used as effective catalysts for the hydrogen evolution reactions (HER) and oxygen evolutions (OER).
Different ∑REFeO3 catalysts (RE = 16 rare-earth elements) obtained from solution combustion synthesis at different red/Ox ratios with ultra-high entropy can be effectively applied for catalytic hydrogen oxidation, with H2 conversion ∼86% at 500 °C.
Different ∑REFeO3 catalysts (RE = 16 rare-earth elements) obtained from solution combustion synthesis at different red/Ox ratios with ultra-high entropy can be effectively applied for catalytic hydrogen oxidation, with H2 conversion ∼86% at 500 °C.
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