First-Principles Design of New Electrodes for Proton-Conducting Solid-Oxide Electrochemical Cells: A-Site Doped Sr2Fe1.5Mo0.5O6−δ Perovskite | Chemistry of Materials
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Schematic illustrations of applications of proton-conducting ceramic... | Download Scientific Diagram
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Schematic illustrations of applications of proton-conducting ceramic... | Download Scientific Diagram
High Proton Conductivity in Ba5Er2Al2ZrO13, a Hexagonal Perovskite-Related Oxide with Intrinsically Oxygen-Deficient Layers | Journal of the American Chemical Society
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Scheelite type Sr1−xBaxWO4 (x = 0.1, 0.2, 0.3) for possible application in Solid Oxide Fuel Cell electrolytes | Scientific Reports
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Progress in proton‐conducting oxides as electrolytes for low‐temperature solid oxide fuel cells: From materials to devices - Zhang - 2021 - Energy Science & Engineering - Wiley Online Library
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Progress in proton‐conducting oxides as electrolytes for low‐temperature solid oxide fuel cells: From materials to devices - Zhang - 2021 - Energy Science & Engineering - Wiley Online Library
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Towards the Next Generation of Solid Oxide Fuel Cells Operating Below 600 °C with Chemically Stable Proton‐Conducting Electrolytes - Fabbri - 2012 - Advanced Materials - Wiley Online Library
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Improved Conductivity of Spark Plasma Sintered Ho-Substituted BaZrO3 Electrolyte Ceramics for IT-SOFCs | ACS Applied Energy Materials
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Improved mechanical strength, proton conductivity and power density in an 'all-protonic' ceramic fuel cell at intermediate temperature | Scientific Reports
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