Martin Schnedlitz

Dipl.-Ing.

20152019
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Chemical Compounds

Superfluid helium
Nanoparticles
Vanadium
Oxides
Transmission electron microscopy
Helium
Sublimation
Amorphous carbon
Metals
Oligomers
Oxidation
Passivation
Gold
Atoms
Catalysis
Nanowires
Spectroscopy
Iron
Temperature
Electron energy loss spectroscopy
Oxygen
Wire
Scanning electron microscopy
Surface diffusion
Cellular automata
Model structures
Experiments
Shells (structures)
Alloying
Cooling
Melting point
Molecular dynamics
Vacuum
Ionization
Fused silica
Ultraviolet spectroscopy
Absorption spectroscopy
Surface-Active Agents
Degradation
Lattice constants
Intermetallics
Density functional theory
Absorption spectra
Pickups
Catalyst activity
Computer simulation
Energy gap
Laser ablation
Coinage
Electronic structure

Physics & Astronomy

Physics

nanoparticles
surface diffusion
D lines
atoms
temperature
electrons
absorption spectra
electron energy

Chemistry and Materials

helium
vanadium oxides
structural stability
boron nitrides
oligomers
oxidation
wire
gold
iron
carbon
surface energy
oxides
oxygen

General

transmission electron microscopy
synthesis
surface plasmon resonance
cellular automata
scanning electron microscopy
passivity
templates
routes
simulation
metals
energy dissipation
imaging techniques
kinetics
wetting
assembly
miscibility gap
reaction kinetics
metastable state
grids
degradation
surfactants

Aerospace Sciences

spectroscopy
Raman spectroscopy
Janus
plains

Engineering

nanowires
high resolution
electrical resistivity
electron scattering

Engineering & Materials Science

Superfluid helium
Nanoparticles
Transmission electron microscopy
Passivation
Amorphous carbon
Catalysis
Oxidation
Iron
Temperature
Model structures
Oxygen
Shells (structures)
Alloying
Cooling
Helium
Melting point
Molecular dynamics
Electron energy loss spectroscopy
Vacuum
Atoms
Scanning electron microscopy
Intermetallics
Oxides
Density functional theory
Catalyst activity
Computer simulation
Metals
Heating