Back to Search Start Over

Enhanced Low-Temperature Thermoelectric Performance in (PbSe)1+δ(VSe2)1 Heterostructures due to Highly Correlated Electrons in Charge Density Waves

Authors :
Indu Aravind
Dmitri Leo M. Cordova
Stephen B. Cronin
Haotian Shi
David W. Johnson
Yu Wang
Zhi Cai
Li Shi
Lang Shen
Danielle M. Hamann
Evguenia Karapetrova
Jihan Chen
Bo Wang
Source :
Nano Letters. 20:8008-8014
Publication Year :
2020
Publisher :
American Chemical Society (ACS), 2020.

Abstract

We explore the effect of charge density wave (CDW) on the in-plane thermoelectric transport properties of (PbSe)1+δ(VSe2)1 and (PbSe)1+δ(VSe2)2 heterostructures. In (PbSe)1+δ(VSe2)1 we observe an abrupt 86% increase in the Seebeck coefficient, 245% increase in the power factor, and a slight decrease in resistivity over the CDW transition. This behavior is not observed in (PbSe)1+δ(VSe2)2 and is rather unusual compared to the general trend observed in other materials. The abrupt transition causes a deviation from the Mott relationship through correlated electron states. Raman spectra of the (PbSe)1+δ(VSe2)1 material show the emergence of additional peaks below the CDW transition temperature associated with VSe2 material. Temperature-dependent in-plane X-ray diffraction (XRD) spectra show a change in the in-plane thermal expansion of VSe2 in (PbSe)1+δ(VSe2)1 due to lattice distortion. The increase in the power factor and decrease in the resistivity due to CDW suggest a potential mechanism for enhancing the thermoelectric performance at the low temperature region.

Details

ISSN :
15306992 and 15306984
Volume :
20
Database :
OpenAIRE
Journal :
Nano Letters
Accession number :
edsair.doi...........96e3c04a3f130793fe5ebe6c332fd4a6
Full Text :
https://doi.org/10.1021/acs.nanolett.0c02882