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Improving the electrolyte-cathode assembly for mt-SOFC
Nicolas Hildenbrand
Faculty of Science and Technology
Inorganic Materials Science
Research output
:
Thesis
›
PhD Thesis - Research UT, graduation UT
455
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Engineering
Assembly
100%
Specific Area
66%
Performance
66%
Surfaces
66%
Commercialisation
33%
Pulsed Laser
33%
Diffusion
33%
Lanthanum
33%
Engineering
33%
Microstructure
33%
Temperature
33%
Road
33%
Dense Layer
33%
Material Science
Electrolyte
100%
Cathode
100%
Material
50%
Electrode
33%
Solid
33%
Pulsed Laser Deposition
33%
Surface
33%
Oxide
33%
Cathode Material
33%
Temperature
16%
Microstructure
16%
Nickelate
16%
Physics
Cathode
100%
Electrolyte
100%
Oxygen
25%
Performance
25%
Area
25%
Electrodes
25%
Solid State
25%
Oxide
25%
Fuel Cell
25%
Temperature
12%
Diffusivity
12%
Focusing
12%
Lanthanum
12%
Pulsed Laser Deposition
12%
Road
12%
Nanotechnology
12%
Chemistry
Electrolyte
100%
Cathode
100%
Porosity
25%
Dioxygen
25%
Resistance
25%
Pulsed Laser Deposition
25%
Surface
25%
Diffusion
12%
Reaction Temperature
12%
Microstructure
12%
Aqueous Solution
12%
Procedure
12%
Chemical Engineering
Solid Oxide Fuel Cells
100%
Pulsed Laser Deposition
66%
Oxygen
66%
Temperature
33%
Lanthanum
33%
Nanotechnology
33%