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  4. Enhanced thermoelectric properties of Cu2Se via Sb doping: An experimental and computational study
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Enhanced thermoelectric properties of Cu2Se via Sb doping: An experimental and computational study

Author(s)
Rudradawong, Chalermpol
Khammuang, Satchakorn
Kotmool, Komsilp
Bovornratanaraks, Thiti
Limsuwan, Pichet
Somdock, Nuttakrit
Sakdanuphab, Rachsak
Sakulkalavek, Aparporn
Date Issued
February 1, 2023
Type
Article
DOI
10.1016/j.jeurceramsoc.2022.09.021
Abstract
In this study, Cu2Se1−xSbx (x = 0.000, 0.005, 0.010, and 0.015) thermoelectric materials were synthesised using a solid-state reaction technique. A first-principles calculation indicated that the formation energy of the substitution of antimony (Sb) on the Se site is negative and more stable than those of copper (Cu) sites. Sb doping enhanced the lamellar orientation, decreased the grain size, and created an acceptor impurity level. The electrical resistivity and Seebeck coefficient decreased with increasing Sb doping. A minimum reduction in the thermal conductivity by approximately three times that of the undoped sample was obtained at x = 0.005 with a value of 0.40 W/m K at 523 K. The maximum figure of merit (ZT) was obtained at x = 0.005 with a value of 0.47 at 523 K. These findings indicate that substituting Sb into Se sites is an efficient approach for improving copper selenide (Cu2Se) thermoelectric materials.
Citation
Journal of the European Ceramic Society, 43(2), 401-406, 2023
Subjects

First-principles calc...

Sb doping

Thermoelectric materi...

α-Cu2Se

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