
AbstractA simple chemical bath deposition is used to coat a complex porous ceramic scaffold with a conformal Ni layer. The resulting composite is used as a solid oxide fuel cell electrode, and its electrochemical response is measured in humidified hydrogen. X‐ray tomography is used to determine the microstructural characteristics of the uncoated and Ni‐coated porous structure, which include the surface area to total volume, the radial pore size, and the size of the necks between the pores.
PROTON CONDUCTOR, CHEMICAL BATH DEPOSITION, FABRICATION, fuel cells, ceramics, Electrolysis, nickel, THIN-FILMS, Electric Power Supplies, ELECTRICAL-CONDUCTIVITY, Nickel, 0399 Other Chemical Sciences, Electrochemistry, GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY, IMPREGNATION, Electrodes, Science & Technology, Multidisciplinary, SOFC ANODES, DIFFUSIVITY, Organic Chemistry, General Chemistry, PERFORMANCE, Full Papers, 540, surface analysis, 620, Chemistry, electrochemistry, Physical Sciences, Science & Technology - Other Topics, Porosity, INTERFACES
PROTON CONDUCTOR, CHEMICAL BATH DEPOSITION, FABRICATION, fuel cells, ceramics, Electrolysis, nickel, THIN-FILMS, Electric Power Supplies, ELECTRICAL-CONDUCTIVITY, Nickel, 0399 Other Chemical Sciences, Electrochemistry, GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY, IMPREGNATION, Electrodes, Science & Technology, Multidisciplinary, SOFC ANODES, DIFFUSIVITY, Organic Chemistry, General Chemistry, PERFORMANCE, Full Papers, 540, surface analysis, 620, Chemistry, electrochemistry, Physical Sciences, Science & Technology - Other Topics, Porosity, INTERFACES
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