Advanced Electrode Materials for Water Electrolysis: Design Principles, Performance Trade-Offs, and Technology Pathways Across ALK, PEM, SOEC, and AEM Systems. [PDF]
Łosiewicz B.
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Cross-linked PVA/PSSA-CNTs based polyelectrolyte membranes with enhanced proton conductivity for fuel cell applications. [PDF]
El-Desouky EA +5 more
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Photovoltaic water electrolysis reaching 31.3% solar-to-H<sub>2</sub> conversion efficiency under outdoor operating conditions. [PDF]
Martínez JF +3 more
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Enhanced PEMFC Performance and Durability Enabled by a Highly Oxygen-Permeable Ionomer Binder. [PDF]
Tong Y, Tang H, Zhang H, Wang Y.
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Beyond Nafion with Fluorine-Free sPSU-sNIM Membranes: Nanostructured Proton Pathways for Harsh Fuel Cell Environments. [PDF]
Simari C +3 more
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From Formation to Failure: The Role of Hydrogen Peroxide in Proton Exchange Membrane Technologies. [PDF]
Mo T +5 more
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Gaseous CO<sub>2</sub> electrolysis: latest advances in electrode and electrolyzer technologies toward abating CO<sub>2</sub> emissions. [PDF]
Kamiya K +9 more
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Perfluorinated Sulfonic Acid-Based Ionomers: Current State and Prospects. [PDF]
Kozlov VA +4 more
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A unified electrocatalytic platform for the chemical-H<sub>2</sub>-electricity triad from biomass <i>via</i> interfacial electronic engineering. [PDF]
Wang W +5 more
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