English

Effective Scattering Cross-section in Lattice Thermal Conductivity Calculation with Differential Effective Medium Method

Materials Science 2013-08-20 v1

Abstract

To further reduce the lattice thermal conductivity of thermoelectric materials, the technique of embedding nano-inclusions into bulk matrix materials, in addition to point defect scattering via alloying, was widely applied. Differential Effective Medium (DEM) method was employed to calculate two-phase heterogeneous systems. However, in most effective medium treatment, the interface scattering of matrix phonons by embedded nanoparticle was underestimated by adopting particle's projected area as scattering cross-section. Herein, modified cross-section calculations, as well as grain sizes dispersions, are applied in DEM, with the calculations then validated by comparing with Monte-Carlo simulations and existing experimental data. Predictions of lattice thermal conductivity reduction on in-situ formed Full Heusler(FH)/Half Heusler(HH) nano/matrix system are discussed.

Keywords

Cite

@article{arxiv.1306.6274,
  title  = {Effective Scattering Cross-section in Lattice Thermal Conductivity Calculation with Differential Effective Medium Method},
  author = {Di Wu and A. S. Petersen and S. J. Poon},
  journal= {arXiv preprint arXiv:1306.6274},
  year   = {2013}
}
R2 v1 2026-06-22T00:40:45.987Z