Molecules (Nov 2022)

Fine-Tuning Bi<sub>2</sub>Te<sub>3</sub>-Copper Selenide Alloys Enables an Efficient n-Type Thermoelectric Conversion

  • Longbin Li,
  • Jianchao Jia,
  • Chaosheng Shi,
  • Wei Zeng

DOI
https://doi.org/10.3390/molecules27238183
Journal volume & issue
Vol. 27, no. 23
p. 8183

Abstract

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Bismuth tellurides is one of the most promising thermoelectric (TE) material candidates in low-temperature application circumstances, but the n-type thermoelectric property is relatively low compared to the p-type counterpart and still needs to be improved. Herein, we incorporated different copper selenides (CuSe, Cu3Se2 and Cu2−xSe) into a Bi2Te3 matrix to create the alloy by grinding and successive sintering to enable higher thermoelectric performance. The results demonstrated that all alloys achieved n-type TE characteristics and Bi2Te3-CuSe exhibited the best Seebeck coefficient and power factor among them. Along with the low thermal conductivity, the maximum dimensionless TE figure of merit (ZT) value of 1.64 at 573 K was delivered for Bi2Te3-CuSe alloy, which is among the best reported results in the n-type Bi2Te3-based TE materials to the best of our knowledge. The improved TE properties should be related to the co-doping process of Se and Cu. Our investigation shows a new method to enhance the performance of n-type TE materials by appropriate co-doping or alloying.

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