Low-valence Cu+-tailoring La0.5Sr1.5MnO4 as a novel single-phase cathode for proton-conducting solid oxide fuel cells
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering
Reference44 articles.
1. Rational design of perovskite ferrites as high-performance proton-conducting fuel cell cathodes;Wang;Nat. Cataly.,2022
2. Highly durable, coking and sulfur tolerant, fuel-flexible protonic ceramic fuel cells;Duan;Nature,2018
3. A robust fuel cell operated on nearly dry methane at 500 °C enabled by synergistic thermal catalysis and electrocatalysis;Chen;Nat. Energy,2018
4. Solid oxide fuel cells with proton-conducting La0.99Ca0.01NbO4 electrolyte;Bi;Electrochim. Acta,2018
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1. B-site high-entropy tailoring K2NiF4 oxide as an effective cathode for proton-conducting solid oxide fuel cells;Journal of Materials Science & Technology;2024-07
2. Structural, and complex impedance studies of ruddlesden-popper Sr1.80Nd0.20MnO4 oxide;Solid State Communications;2024-04
3. Design of a perovskite oxide cathode for a protonic ceramic fuel cell;Ceramics International;2024-01
4. Ameliorating La0.5Sr1.5MnO4 with Ni-doping to enhance cathode electrocatalysis for proton-conducting solid oxide fuel cells;Materials Advances;2024
5. Altering B-site surroundings with low-valence Cu to regulate La1.2Sr0.8NiO4+δ electrocatalysis for protonic ceramic fuel cells;Ceramics International;2023-11
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