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Robust Homogeneous Segmented Power Generator Driven by SbTe-Based Thermoelectrics.

作者信息

Wang Min, Zhang Qiang, Pang Kaikai, Yuan Minhui, Pan Qiaoyan, Li Ruyuan, Miao Liya, Tan Xiaojian, Hu Haoyang, Wu Jiehua, Sun Peng, Liu Guo-Qiang, Jiang Jun

机构信息

Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, China.

School of Material Science and Chemical Engineering, Ningbo University, Ningbo, 315211, China.

出版信息

Adv Mater. 2025 Jun;37(24):e2503128. doi: 10.1002/adma.202503128. Epub 2025 Apr 3.

Abstract

Thermoelectric (TE) technology offers a promising solution for waste heat recovery, particularly in applications involving abundant low-grade heat (<650 K). However, for over half a century, TE power generators have predominantly relied on BiTe alloys with limited efficiencies below 7%. Herein, Cd and S are doped into SbTe to promote microstructural regulation characterized by dense twin boundaries and dislocations, resulting in a 45% reduction of lattice thermal conductivity at 300 K. Combined with the optimized density-of-states effective mass and expanded band gap, the CdSbTeS sample attains a peak ZT of 1.1 at 650 K and an average ZT of 1.0 from 500 to 650 K, while exhibiting remarkable compressive and bending strengths of 197 and 56 MPa. Most importantly, a well-designed, homogeneous segmented TE power generator, constructed entirely from Bi-Sb-Te alloys, achieves a remarkable efficiency of 9.3% under a temperature gradient of 350 K, as certified by third-party validation. This work provides new insights into extending the operation temperature of BiTe, demonstrating great potential for low-grade waste heat harvest.

摘要

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