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Nanoscale unagglomerated nonoxide particles from a sodium coflow flame
D. P. Dufaux
, R. L. Axelbaum
Department of Energy, Environmental & Chemical Engineering
Institute of Clinical and Translational Sciences (ICTS)
Research output
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Contribution to journal
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Article
›
peer-review
57
Scopus citations
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Keyphrases
Sodium
100%
Sodium Chloride
100%
Non-oxide
100%
Coflow Flames
100%
Coating Materials
40%
Highly Effective
20%
Nanoparticles
20%
Size Control
20%
Hydrocarbons
20%
Condensation
20%
Metal-ceramic
20%
Agglomeration
20%
Halides
20%
In Situ TEM
20%
Sublimation
20%
Individual Nanoparticles
20%
Material Needs
20%
Metal Matrix Composites
20%
Burner
20%
Flame Mode
20%
TiB2 Particles
20%
As-received
20%
Non-oxide Ceramics
20%
Coflow Burner
20%
Nanometer-sized Particles
20%
Sodium Vapor
20%
Titanium Diboride
20%
Composite Ceramics
20%
Water Washing
20%
Ti Powder
20%
Elemental Titanium
20%
Engineering
Nanoparticle
100%
Nanoscale
100%
Coating Material
100%
Nanometre
50%
Sized Particle
50%
X Ray Diffraction
50%
Condensation
50%
Material Science
Nanoparticle
100%
Sodium
100%
Titanium
100%
X-Ray Diffraction
50%
Halide
50%
Composite Material
50%
Chemical Engineering
Sodium Chloride
100%
Nanoparticle
40%
Chemical Element
20%