High-performance flexible p-type Ce-filled Fe3CoSb12 skutterudite thin film for medium-to-high-temperature applications

P-type Fe 3 CoSb 12 -based skutterudite thin films are successfully fabricated, exhibiting high thermoelectric performance, stability, and flexibility at medium-to-high temperatures, based on preparing custom target materials and employing advanced pulsed laser deposition techniques to address the b...

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Veröffentlicht in:Nature communications 2024-05, Vol.15 (1), p.4242-4242, Article 4242
Hauptverfasser: Li, Dou, Shi, Xiao-Lei, Zhu, Jiaxi, Cao, Tianyi, Ma, Xiao, Li, Meng, Han, Zhuokun, Feng, Zhenyu, Chen, Yixing, Wang, Jianyuan, Liu, Wei-Di, Zhong, Hong, Li, Shuangming, Chen, Zhi-Gang
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Sprache:eng
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Zusammenfassung:P-type Fe 3 CoSb 12 -based skutterudite thin films are successfully fabricated, exhibiting high thermoelectric performance, stability, and flexibility at medium-to-high temperatures, based on preparing custom target materials and employing advanced pulsed laser deposition techniques to address the bonding challenge between the thin films and high-temperature flexible polyimide substrates. Through the optimization of fabrication processing and nominal doping concentration of Ce, the thin films show a power factor of >100 μW m −1 K −2 and a ZT close to 0.6 at 653 K. After >2000 bending cycle tests at a radius of 4 mm, only a 6 % change in resistivity can be observed. Additionally, the assembled p-type Fe 3 CoSb 12 -based flexible device exhibits a power density of 135.7 µW cm −2 under a temperature difference of 100 K with the hot side at 623 K. This work fills a gap in the realization of flexible thermoelectric devices in the medium-to-high-temperature range and holds significant practical application value. The authors fabricate p-type Fe 3 CoSb 12 -based skutterudite films exhibiting high thermoelectric performance, stability, and flexibility at medium-to-high temperatures, based on preparing custom target materials and pulsed laser deposition techniques.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-48677-4