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Thermopower across the insulator-metal divide in NiCr2-xVxS4 (0 2)
A V Powell, P Vaqueiro, T Ohtani
School of Engineering & Physical Sciences
Institute of Chemical Sciences
Institute of Mechanical, Process & Energy Engineering
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peer-review
5
Citations (Scopus)
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Chemistry
Electronic State
100%
Reaction Activation Energy
100%
Phonon
100%
Transport Property
100%
Structure
100%
Phase Composition
100%
Powder Neutron Diffraction
100%
Nichrome
100%
Vanadium
100%
Cation
100%
Seebeck Coefficient
100%
Polaron
100%
INIS
data
100%
metals
100%
levels
50%
chains
50%
neutron diffraction
50%
cations
50%
transport
50%
yields
50%
temperature dependence
50%
polarons
50%
increasing
50%
temperature range
50%
slabs
50%
activation energy
50%
vanadium
50%
electron-phonon coupling
50%
Physics
Powder Neutron Diffraction
100%
Activation Energy
100%
Temperature Dependence
100%
Polaron
100%
Phonon
100%
Transport Property
100%
Seebeck Effect
100%
Earth and Planetary Sciences
Activation Energy
100%
Transport Property
100%
Phonon
100%
Polaron
100%
Neutron Diffraction
100%
Seebeck Effect
100%
Engineering
Temperature Range
100%
Electronic State
100%
Temperature Dependence
100%
Activation Energy
100%
Seebeck Coefficient
100%
Material Science
Powder Neutron Diffraction
100%
Nichrome
100%
Activation Energy
100%
Vanadium
100%