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Realizing the Ultralow Lattice Thermal Conductivity of Cu3SbSe4 Compound via Sulfur Alloying Effect

Authors :
Lijun Zhao
Haiwei Han
Zhengping Lu
Jian Yang
Xinmeng Wu
Bangzhi Ge
Lihua Yu
Zhongqi Shi
Abdulnasser M. Karami
Songtao Dong
Shahid Hussain
Guanjun Qiao
Junhua Xu
Source :
Nanomaterials, Vol 13, Iss 19, p 2730 (2023)
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

Cu3SbSe4 is a potential p-type thermoelectric material, distinguished by its earth-abundant, inexpensive, innocuous, and environmentally friendly components. Nonetheless, the thermoelectric performance is poor and remains subpar. Herein, the electrical and thermal transport properties of Cu3SbSe4 were synergistically optimized by S alloying. Firstly, S alloying widened the band gap, effectively alleviating the bipolar effect. Additionally, the substitution of S in the lattice significantly increased the carrier effective mass, leading to a large Seebeck coefficient of ~730 μVK−1. Moreover, S alloying yielded point defect and Umklapp scattering to significantly depress the lattice thermal conductivity, and thus brought about an ultralow κlat ~0.50 Wm−1K−1 at 673 K in the solid solution. Consequently, multiple effects induced by S alloying enhanced the thermoelectric performance of the Cu3SbSe4-Cu3SbS4 solid solution, resulting in a maximum ZT value of ~0.72 at 673 K for the Cu3SbSe2.8S1.2 sample, which was ~44% higher than that of pristine Cu3SbSe4. This work offers direction on improving the comprehensive TE in solid solutions via elemental alloying.

Details

Language :
English
ISSN :
20794991
Volume :
13
Issue :
19
Database :
Directory of Open Access Journals
Journal :
Nanomaterials
Publication Type :
Academic Journal
Accession number :
edsdoj.3c48cd034629474da8e9211d8dccf0cd
Document Type :
article
Full Text :
https://doi.org/10.3390/nano13192730