Solid-state thermoelectric technology offers a promising solution for converting waste heat to useful electrical power. Both high operating temperature and high figure of merit zT are desirable for high-efficiency thermoelectric power generation. Here we report a high zT of â¼1.5 at 1,200âK for the p-type FeNbSb heavy-band half-Heusler alloys. High content of heavier Hf dopant simultaneously optimizes the electrical power factor and suppresses thermal conductivity. Both the enhanced point-defect and electron-phonon scatterings contribute to a significant reduction in the lattice thermal conductivity. An eight couple prototype thermoelectric module exhibits a high conversion efficiency of 6.2% and a high power density of 2.2âWâcm(-2) at a temperature difference of 655âK. These findings highlight the optimization strategy for heavy-band thermoelectric materials and demonstrate a realistic prospect of high-temperature thermoelectric modules based on half-Heusler alloys with low cost, excellent mechanical robustness and stability.
Realizing high figure of merit in heavy-band p-type half-Heusler thermoelectric materials.
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作者:Fu Chenguang, Bai Shengqiang, Liu Yintu, Tang Yunshan, Chen Lidong, Zhao Xinbing, Zhu Tiejun
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2015 | 起止号: | 2015 Sep 2; 6:8144 |
| doi: | 10.1038/ncomms9144 | ||
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