Abstract
Modifications of phonon thermal conduction by perfect and extended edge dislocations in SrTiO3 have been numerically analyzed. SrTiO3 has a unique feature that Ti and O atoms, which form optical phonon modes at intermediate and high frequencies, dominates thermal conduction rather than Sr atoms. Dislocations reduce thermal conductivity through introducing spatial inhomogeneity, that is, nonuniform Ti–O bond strains in the network of TiO6 octahedra. Due to the different spatial distributions of Ti–O bond strains, an extended dislocation with partial dislocations and stacking faults has a different mechanism of phonon scattering compared with perfect dislocations. The dislocations scatter phonons, most significantly for acoustic phonons, almost eliminating their contributions to thermal conduction. Consequently, optical phonons of Ti and O atoms at intermediate frequencies dominate thermal conduction when dislocations are present in SrTiO3.
Original language | English |
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Article number | e20438 |
Journal | Journal of the American Ceramic Society |
Volume | 108 |
Issue number | 6 |
DOIs | |
Publication status | Published - Jun 2025 |
All Science Journal Classification (ASJC) codes
- Ceramics and Composites
- Materials Chemistry