Improvement in the Thermoelectric Performance of Manganese Telluride With the Addition of Cu 2 Se

ABSTRACT Manganese telluride (MnTe) has been proposed to be a favorable candidate for middle range temperature thermoelectric (TE) material; whereas, the low carrier concentration and higher thermal conductivity have restricted its applications. Herein, a crucial role of Cu‐ion in synthesized MnTe with the addition of Cu 2 Se through mechanical alloying and hot press sintering facilitate the improvement of carrier density and thus enhanced power factor of MnTe with the incorporation of 8 at.% Cu 2 Se due to novel liquid‐like behavior of Cu‐ion in Cu 2 Se at elevated temperatures. Moreover, the excessive hole density of Cu 2 Se and the undissolved nano‐scale Cu 2 Se results in a remarkable scattering of phonons and thus suppressed lattice thermal conductivity at higher temperatures. With this approach, the overall thermoelectric performance of MnTe + x at.% Cu 2 Se was investigated and we found enhancement in the thermoelectric performance with the inclusion of Cu 2 Se with a maximum ZT of ∼0.72 in 8 at.% Cu 2 Se added MnTe sample at 873 K.

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Publication Details

Journal
Small Methods
Published
2026-09-01
DOI
https://doi.org/10.1002/smtd.71011
Primary Topic
Advanced Thermoelectric Materials and Devices
Type
article
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Improvement in the Thermoelectric Performance of Manganese Telluride With the Addition of Cu 2 Se

Abdul Basit, Muhammad Haider, Xin Li, Jiwu Xin et al.
Small Methods
Advanced Thermoelectric Materials and Devices
article

Improvement in the Thermoelectric Performance of Manganese Telluride With the Addition of Cu 2 Se

Abdul Basit, Muhammad Haider, Xin Li, Jiwu Xin, Junyou Yang
article en

Abstract

ABSTRACT Manganese telluride (MnTe) has been proposed to be a favorable candidate for middle range temperature thermoelectric (TE) material; whereas, the low carrier concentration and higher thermal conductivity have restricted its applications. Herein, a crucial role of Cu‐ion in synthesized MnTe with the addition of Cu 2 Se through mechanical alloying and hot press sintering facilitate the improvement of carrier density and thus enhanced power factor of MnTe with the incorporation of 8 at.% Cu 2 Se due to novel liquid‐like behavior of Cu‐ion in Cu 2 Se at elevated temperatures. Moreover, the excessive hole density of Cu 2 Se and the undissolved nano‐scale Cu 2 Se results in a remarkable scattering of phonons and thus suppressed lattice thermal conductivity at higher temperatures. With this approach, the overall thermoelectric performance of MnTe + x at.% Cu 2 Se was investigated and we found enhancement in the thermoelectric performance with the inclusion of Cu 2 Se with a maximum ZT of ∼0.72 in 8 at.% Cu 2 Se added MnTe sample at 873 K.

Small Methods
Zhejiang International Studies University (CN), King Fahd University of Petroleum and Minerals (SA), Huazhong University of Science and Technology (CN), Beihang University (CN)
Openalex Percentile: Top 23%
Advanced Thermoelectric Materials and Devices
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