Optimization of the Lanthanum Tungstate/Pr2NiO4Half Cell for Application in Proton Conducting Solid Oxide Fuel Cells
Author:
Publisher
Wiley
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference20 articles.
1. Compatibility of proton conducting La6WO12 electrolyte with standard cathode materials
2. Complete structural model for lanthanum tungstate: a chemically stable high temperature proton conductor by means of intrinsic defects
3. Effects of protons and acceptor substitution on the electrical conductivity of La6WO12
4. Towards the Next Generation of Solid Oxide Fuel Cells Operating Below 600 °C with Chemically Stable Proton-Conducting Electrolytes
5. Hydration and transport properties of the Pr2−xSrxNiO4+δ compounds as H+-SOFC cathodes
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1. Advances in low-temperature solid oxide fuel cells: An explanatory review;Journal of Power Sources;2024-08
2. A novel niobium (oxy)nitride-BaCe0.7Zr0.1Y0.2O3-δ composite electrode for Proton Ceramic Membrane Reactors (PCMRs);Journal of Energy Storage;2023-09
3. Evaluation of La2-(Ca/Sr) Ni1-Fe O4+δ (x = 0.5, 0.6; y = 0.4, 0.5) as cathodes for proton-conducting SOFC based on lanthanum tungstate;Electrochimica Acta;2022-07
4. Review on recent advancement in cathode material for lower and intermediate temperature solid oxide fuel cells application;International Journal of Hydrogen Energy;2022-01
5. Development and application of lanthanum tungstate series proton conductors;Chinese Science Bulletin;2021-09-01
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