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Metal-semiconductor amorphous and nanoscale Ge-phase composites produced by rapid solidification and by devitrification of an amorphous matrix
D. V. Louzguine-Luzgin
, A. Inoue
Advanced Institute for Materials Research (AIMR)
Research output
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Contribution to journal
›
Article
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peer-review
4
Citations (Scopus)
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Physics
Rare Earth Element
100%
Alloy
66%
Rapid Quenching (Metallurgy)
50%
Transition Element
50%
Nanoscale
33%
Solid Solutions
16%
Phase Transformations
16%
Amorphous Semiconductor
16%
Melt Spinning
16%
Particle
16%
Metal
16%
Heating
16%
Composite
16%
Chemistry
Alloy
66%
Lanthanoid Atom
50%
Transition Element
50%
Rapid Solidification
50%
Amorphous Material
33%
Sample
33%
Nanocomposite
16%
Nanoparticle
16%
Phase Property
16%
Structure
16%
Particle Size
16%
Heating
16%
Phase Transition
16%
Solid Solution
16%
Engineering
Alloy
66%
Conductive
33%
Nanoscale
33%
Amorphous Matrix
33%
Melt Spinning
16%
Glassy Phase
16%
Spinning Technique
16%
Homogeneous Distribution
16%
Heating
16%
Solid Solution
16%
Composite
16%
Based Amorphous Alloy
16%
Chemical Engineering
Transition Metal
100%
Heating
16%
Material Science
Nanocomposites
16%
Paper
16%
Solid Solution
16%