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Hf-doping effect on the thermoelectric transport properties of n-Type Cu0.01Bi2Te2.7Se0.3

Authors
Hwang, J.Y.Choi, S.Kim, S.-I.Lim, J.-H.Choi, S.-M.Yang, H.Kim, H.-S.Lee, K.H.
Issue Date
Jul-2020
Publisher
MDPI AG
Keywords
Bi2Te3; Effective mass; Hf-doping; Lattice thermal conductivity; Thermoelectric
Citation
Applied Sciences (Switzerland), v.10, no.14
Journal Title
Applied Sciences (Switzerland)
Volume
10
Number
14
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/78024
DOI
10.3390/app10144875
ISSN
2076-3417
Abstract
Polycrystalline bulks of Hf-doped Cu0.01Bi2Te2.7Se0.3 are prepared via a conventional melt-solidification process and subsequent spark plasma sintering technology, and their thermoelectric performances are evaluated. To elucidate the effect of Hf-doping on the thermoelectric properties of n-type Cu0.01Bi2Te2.7Se0.3, electronic and thermal transport parameters are estimated from the measured data. An enlarged density-of-states effective mass (from ~0.92 m0 to ~1.24 m0) is obtained due to the band modification, and the power factor is improved by Hf-doping benefitting from the increase in carrier concentration while retaining carrier mobility. Additionally, lattice thermal conductivity is reduced due to the intensified point defect phonon scattering that originated from the mass difference between Bi and Hf. Resultantly, a peak thermoelectric figure of merit zT of 0.83 is obtained at 320 K for Cu0.01Bi1.925Hf0.075Te2.7Se0.3, which is a ~12% enhancement compared to that of the pristine Cu0.01Bi2Te2.7Se0.3. © 2020 by the authors.
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