arXiv · 2208.08647
Giant thermoelectric power factor anisotropy in PtSb$_{1.4}$Sn$_{0.6}$
Abstract
We report giant anisotropy in thermoelectric power factor ($S^2σ$) of marcasite structure-type PtSb$_{1.4}$Sn$_{0.6}$. PtSb$_{1.4}$Sn$_{0.6}$, synthesized using ambient pressure flux growth method upon mixing Sb and Sn on the same atomic site, is a new phase different from both PtSb$_2$ and PtSn$_2$ that crystallize in the cubic $Pa\bar{3}$ pyrite and $Fm\bar{3}m$ fluorite unit cell symmetry, respectively. Giant difference in $S^2σ$ for heat flow applied along different principal directions of the orthorhombic unit cell mostly stems from anisotropic Seebeck coefficients.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yu Liu, Zhixiang Hu, Michael O. Ogunbunmi, Eli Stavitski, Klaus Attenkofer, Svilen Bobev, Cedomir Petrovic. 2022-08-18. Giant thermoelectric power factor anisotropy in PtSb$_{1.4}$Sn$_{0.6}$. https://doi.org/10.1021/acs.inorgchem.2c02218
Cite the original work for its findings. Save a collection to share your selection of sources.