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Influence of Pd Doping on Electrical and Thermal Properties of n-Type Cu0.008Bi2Te2.7Se0.3 Alloys

Authors
Kim, Se YunKim, Hyun-SikLee, Kyu HyoungCho, Hyun-junChoo, Sung-silHong, Seok-wonOh, YeseongYang, YerimLee, KimoonLim, Jae-HongChoi, Soon-MokPark, Hee JungShin, Weon HoKim, Sang-il
Issue Date
2-Dec-2019
Publisher
MDPI
Keywords
thermoelectric; Pd doping; effective mass; bipolar thermal conductivity; phonon scattering
Citation
MATERIALS, v.12, no.24
Journal Title
MATERIALS
Volume
12
Number
24
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/17872
DOI
10.3390/ma12244080
ISSN
1996-1944
Abstract
Doping is known as an effective way to modify both electrical and thermal transport properties of thermoelectric alloys to enhance their energy conversion efficiency. In this project, we report the effect of Pd doping on the electrical and thermal properties of n-type Cu0.008Bi2Te2.7Se0.3 alloys. Pd doping was found to increase the electrical conductivity along with the electron carrier concentration. As a result, the effective mass and power factors also increased upon the Pd doping. While the bipolar thermal conductivity was reduced with the Pd doping due to the increased carrier concentration, the contribution of Pd to point defect phonon scattering on the lattice thermal conductivity was found to be very small. Consequently, Pd doping resulted in an enhanced thermoelectric figure of merit, zT, at a high temperature, due to the enhanced power factor and the reduced bipolar thermal conductivity.
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