Enhanced Thermoelectric Performance of Yb-Filled Skutterudite with Bottom-Up Formed CoSi 2 Nanoparticles

It is known that Yb-filled skutterudite with excellent thermoelectric performance is promising for a power generation device in the intermediate temperature region. Here we created a new approach to obtain nanostructured materials by adding Si to Co-overstoichiometric Yb-filled skutterudite through...

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Veröffentlicht in:ACS applied materials & interfaces 2022-12, Vol.14 (51), p.56948-56956
Hauptverfasser: Shi, Wenjing, Du, Qing, Niu, Changlei, Qin, Dandan, Sun, Yuxin, Zhu, Jianbo, Li, Fushan, Xie, Liangjun, Liu, Zihang, Zhang, Qian, Cai, Wei, Guo, Fengkai, Li, Xin, Sui, Jiehe
Format: Artikel
Sprache:eng
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Zusammenfassung:It is known that Yb-filled skutterudite with excellent thermoelectric performance is promising for a power generation device in the intermediate temperature region. Here we created a new approach to obtain nanostructured materials by adding Si to Co-overstoichiometric Yb-filled skutterudite through high-energy ball milling, which embedded bottom-up formed CoSi nanoparticles into grain-refining Yb Co Sb , synergistically resulting in the enhanced thermoelectric properties and room-temperature hardness. On one hand, the abundant grain boundaries and phase interfaces effectively blocked the propagation of medium-low frequency phonons, resulting in a lower lattice thermal conductivity. On the other hand, phase interfaces barrier nicely screened a portion of low-energy electrons, leading to an improved power factor. As a result, an enhanced peak value of ∼1.43 at 823 K and a promising average of ∼1.00 between 300 and 823 K were achieved in the Yb Co Sb /0.05CoSi sample. Meanwhile, such nanostructures also enhanced the hardness through the collective contributions of second phase and fine grain strengthening, which made skutterudite more competitive in practical application.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.2c15413