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Band gap and stability in the ternary intermetallic compounds NiSnM (M=Ti,Zr,Hf): A first-principles study
Serdar Ǧüt,
Karin M. Rabe
School of Arts and Sciences, Physics & Astronomy
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peer-review
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Engineering & Materials Science
Energy gap
100%
Intermetallics
93%
Electronic properties
45%
Band structure
41%
Semiconductor materials
26%
Stabilization
24%
Decomposition
21%
Set theory
18%
Metals
18%
Semiconducting intermetallics
4%
Chemical Compounds
Intermetallic Compound
94%
Band Gap
66%
Plane Wave
58%
Pseudopotential
55%
Electronic Property
36%
Semiconductor
33%
Decomposition
28%
Metal
19%
Physics & Astronomy
intermetallics
78%
sublattices
52%
substructures
37%
energy
20%
structural stability
20%
pseudopotentials
17%
broken symmetry
15%
stabilization
14%
plane waves
14%
decomposition
13%
trends
13%
gradients
11%
metals
9%