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Diamond Nucleation on Surfaces Using Carbon Clusters
R. J. Mcilunasa,
R. P.H. Chang
Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
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INIS
diamonds
37%
films
31%
nucleation
25%
carbon
18%
solids
12%
growth
12%
surfaces
12%
substrates
12%
metals
6%
stability
6%
range
6%
thin films
6%
comparative evaluations
6%
applications
6%
geometry
6%
layers
6%
semiconductor materials
6%
density
6%
graphite
6%
soot
6%
Biochemistry, Genetics and Molecular Biology
Nucleation
100%
Growth
12%
Surface Property
12%
Solid
12%
Chemical Stability
12%
Experiment
6%
Density
6%
Physics
Diamonds
37%
Growth
12%
Solid State
12%
Substrates
12%
Thin Films
6%
Insulators
6%
Graphite
6%
Semiconductor
6%
Utilization
6%
Shapes
6%
Model
6%
Metal
6%
Geometry
6%
Stability
6%
Material Science
Film
31%
Surface
12%
Solid
12%
Thin Films
6%
Semiconductor Material
6%
Amorphous Carbon
6%
Density
6%
Pharmacology, Toxicology and Pharmaceutical Science
Diamond
37%
Carbon
18%
Graphite
6%
Metal
6%