arXiv · 1705.06688
Two-dimensional InSe as a potential thermoelectric material
Abstract
Thermoelectric properties of monolayer indium selenide (InSe) are investigated by using Boltzman transport theory and first-principles calculations as a function of Fermi energy and crystal orientation. We find that the maximum power factor of p-type (n-type) monolayer InSe can be as large as 0.049 (0.043) W/K$^2$m at 300 K in the armchair direction. The excellent thermoelectric performance of monolayer InSe is attributed to both of its Seebeck coefficient and electrical conductivity. The large Seebeck coefficient originates from the moderate (about 2 eV) band gap of monolayer InSe as an indirect gap semiconductor, while its large electrical conductivity is due to its unique two-dimensional density of states (DOS), which consists of an almost constant DOS near the conduction band bottom and a sharp peak near the valence band top.
Explore related subjects
Keep this discovery
Nguyen T. Hung, Ahmad R. T. Nugraha, R. Saito. 2017-09-01. Two-dimensional InSe as a potential thermoelectric material. https://doi.org/10.1063/1.5001184
Cite the original work for its findings. Save a collection to share your selection of sources.