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  4. Suppression of lattice thermal conductivity by mass-conserving cation mutation in multi-component semiconductors
 
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Suppression of lattice thermal conductivity by mass-conserving cation mutation in multi-component semiconductors
File(s)
1.4955401.pdf (3.64 MB)
Published version
Author(s)
Shibuya, T
Skelton, JM
Jackson, AJ
Yasuoka, K
Togo, A
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Type
Journal Article
Abstract
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by their quasi-particle lifetimes. Phonon-phonon interactions represent scattering mechanisms that produce thermal resistance. In thermoelectric materials, this resistance due to anharmonicity should be maximised for optimal performance. We use a first-principles lattice-dynamics approach to explore the changes in lattice dynamics across an isostructural series where the average atomic mass is conserved: ZnS to CuGaS2 to Cu2ZnGeS4. Our results demonstrate an enhancement of phonon interactions in the multernary materials and confirm that lattice thermal conductivity can be controlled independently of the average mass and local coordination environments.
Date Issued
2016-07-12
Date Acceptance
2016-06-24
Citation
APL Materials, 2016, 4 (10)
URI
http://hdl.handle.net/10044/1/41233
DOI
https://www.dx.doi.org/10.1063/1.4955401
ISSN
2166-532X
Publisher
AIP Publishing
Journal / Book Title
APL Materials
Volume
4
Issue
10
Copyright Statement
Available under a CC BY license.
License URL
http://creativecommons.org/licenses/by/4.0/
Publication Status
Published
Article Number
104809
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