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Thermal stability of Li films on polycrystalline molybdenum substrates
O. Fasoranti,
B. E. Koel
Chemical & Biological Engineering
Chemistry
High Meadows Environmental Institute
Mechanical & Aerospace Engineering
Princeton Institute for the Science and Technology of Materials
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
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Engineering & Materials Science
Molybdenum
100%
Lithium
94%
Thermodynamic stability
88%
Zirconium
67%
Substrates
60%
Titanium
51%
Desorption
24%
Scattering
20%
Ions
19%
Ultrahigh vacuum
16%
Auger electron spectroscopy
16%
Molybdenum alloys
16%
Temperature programmed desorption
16%
Monolayers
14%
Fusion reactors
14%
Activation energy
11%
Plasmas
9%
Temperature
8%
Coatings
8%
Chemical analysis
6%
Hot Temperature
5%
Experiments
3%
Physics & Astronomy
molybdenum
84%
lithium
75%
thermal stability
74%
titanium
44%
desorption
28%
ion scattering
25%
molybdenum alloys
15%
fusion reactors
11%
ultrahigh vacuum
10%
Auger spectroscopy
10%
electron spectroscopy
10%
activation energy
7%
coatings
7%
energy
6%
temperature
3%
Chemical Compounds
Polycrystalline Solid
76%
Thermal Stability
56%
Liquid Film
41%
Desorption
24%
Titanium Alloy
13%
Auger Electron Spectroscopy
12%
Energy
10%
Substance Spectroscopy
9%
Vacuum
8%
Ion
8%
Monolayer
8%
Reaction Activation Energy
7%
Coating Agent
6%
Purity
5%