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Carbon Nanofiber layers on Metal and Carbon Substrates
Sergio Pacheco Benito
Catalytic Processes and Materials
Faculty of Science and Technology
Research output
:
Thesis
›
PhD Thesis - Research UT, graduation UT
211
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Biochemistry, Genetics and Molecular Biology
Surface Property
100%
Catalyst
50%
Alpha Oxidation
50%
Sample
50%
Surface Area
50%
Porosity
50%
Catalysis
50%
Reduction (Chemistry)
50%
Contrast
50%
Solution and Solubility
50%
Oxygen Diffusion
50%
Chemistry
Metal
100%
Carbon
100%
Carbon Nanofibre
100%
Porosity
26%
Stainless Steel
13%
Diffusion
6%
Water Type
6%
Catalysis
6%
Ion
6%
Dioxygen
6%
Oxide
6%
Reactor
6%
Carbon Atom
6%
Oxidation Reaction
6%
Surface Area
6%
Surface Roughness
6%
Catalyst Support
6%
Surface
6%
Aqueous Solution
6%
Amount
6%
Sample
6%
Rate
6%
Nitrite
6%
Nitrogen Dioxide
6%
Application
6%
Chemical Engineering
Carbon Nanofiber
100%
Carbon
100%
Deposition Rate
6%
Oxide
6%
Oxygen
6%
Water
6%
Engineering
Substrates
100%
Surfaces
13%
Catalytic Reaction
6%
Pretreatment
6%
Stainless Steel
6%
Diffusion
6%
Performance
6%
Porous Stainless Steel
6%
Reactor
6%
Steel Surface
6%
Roughness
6%
Carbon Deposition
6%
Applications
6%
Porosity
6%
Metal Nanoparticles
6%
Water
6%
Oxidation Reaction
6%
Reduction
6%
Material Science
Catalyst Support
6%