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Structure, growth, and bonding nature of Mg clusters
Vijay Kumar
,
Roberto Car
Chemistry
Physics
Princeton Institute for Computational Science and Engineering
Princeton Materials Institute
Research output
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Contribution to journal
›
Article
›
peer-review
118
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Scopus citations
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Dive into the research topics of 'Structure, growth, and bonding nature of Mg clusters'. Together they form a unique fingerprint.
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Keyphrases
Bonding Nature
100%
Structure Evolution
100%
Mg Clusters
100%
Hcp Structure
66%
Metallic Behavior
33%
Tetrahedron
33%
Charge Density
33%
Simulated Annealing
33%
Local Density Approximation
33%
Density Functional
33%
Metal Clusters
33%
Trigonal Prism
33%
Molecular Dynamics Method
33%
Bonding Character
33%
Icosahedron
33%
Slow Convergence
33%
Lowest-energy Structure
33%
Magic-size Clusters
33%
Unoccupied States
33%
π-character
33%
Cuboctahedron
33%
Jellium Model
33%
Simulated Annealing Technique
33%
Mathematics
Local Density
100%
Density Functional
100%
Tetrahedron
100%
Charge Density
100%
Icosahedron
100%
Prism
100%
Chemistry
Molecular Dynamics
100%
Charge Density
100%
Local-Density Approximation
100%
Physics
Simulated Annealing
100%
Molecular Dynamics
50%
Local Density Approximation
50%
Metal Cluster
50%
Material Science
Density
100%
Simulated Annealing
66%
Metal Cluster
33%