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Size effects in epitaxial oxide thin films
Bouwe Kuiper
Inorganic Materials Science
Faculty of Science and Technology
Research output
:
Thesis
›
PhD Thesis - Research UT, graduation UT
789
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Dive into the research topics of 'Size effects in epitaxial oxide thin films'. Together they form a unique fingerprint.
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Physics
Thin Films
100%
Oxide
100%
Oxygen
40%
Growth
40%
Substrates
40%
Value
20%
Shapes
20%
Self Organization
20%
Crystal Structure
20%
Monte Carlo
20%
Diffraction
20%
X Ray
20%
Lattice Parameter
20%
Photoelectron
20%
Rotation
20%
Film Thickness
20%
Pulsed Laser Deposition
20%
Nanowires
20%
Transition Temperature
20%
Single Crystals
20%
Simulation
20%
Material Science
Oxide
100%
Thin Films
100%
Material
60%
Perovskites
40%
Heterojunction
40%
Physical Property
40%
Materials Property
40%
Lattice Constant
20%
Nanowires
20%
Temperature
20%
Comminution
20%
Materials Class
20%
Surface Structure
20%
Pulsed Laser Deposition
20%
Film Thickness
20%
Single Crystal
20%
Crystal Structure
20%
Engineering
Thin Films
100%
Size Effect
100%
Atomic Layer
33%
Heterostructures
33%
Substrates
33%
Capping Layer
33%
Crystal Structure
16%
Great Detail
16%
Transition Temperature
16%
Pulsed Laser
16%
Lattice Parameter
16%
Enhancement
16%
Intrinsic Property
16%
Material System
16%
Self-Organization
16%
Size Reduction
16%
Simulation
16%
Thickness
16%
Structure Surface
16%
Nanowire
16%