Chen Zhong, Ding Xin, Xu Mingxiang
School of Physics, Southeast University, Nanjing 211189, China.
ACS Omega. 2021 Aug 24;6(35):22681-22687. doi: 10.1021/acsomega.1c02803. eCollection 2021 Sep 7.
Thermoelectric materials have been widely explored for the potential applications in power generation and refrigeration fields. High thermal conductivity (∼500 W/m K) of single-crystal FeSb limits the application in cryogenic cooling. In this work, the FeSb single crystal has been synthesized by the self-flux method. The rocking curve results reveal that the single crystal possesses quite high crystallinity. The micromorphology image shows that the single crystal is pyknotic without observable pores or cracks. Surprisingly, the thermal conductivity is reduced by 2 orders of magnitude compared with the previous reports, which can be attributed to the enhanced phonon scattering by the defects and impurities. Furthermore, the magnetic field can further suppress the thermal transport by reducing the phonon mean-free path. The maximum suppression rate of the thermal conductivity reaches 14% at 60 K when the magnetic field varies from 0 to 9 T. In this work, we have prepared the FeSb single crystal with low thermal conductivity, and the magneto-suppressed thermal transport strategy can be applied to other thermoelectric materials.
热电材料因其在发电和制冷领域的潜在应用而受到广泛研究。单晶FeSb的高导热率(约500 W/m K)限制了其在低温冷却中的应用。在这项工作中,通过自熔剂法合成了FeSb单晶。摇摆曲线结果表明,该单晶具有相当高的结晶度。微观形貌图像显示,单晶致密,没有可观察到的孔隙或裂纹。令人惊讶的是,与之前的报道相比,其热导率降低了2个数量级,这可归因于缺陷和杂质对声子散射的增强。此外,磁场可以通过减小声子平均自由程进一步抑制热传输。当磁场从0变化到9 T时,在60 K下热导率的最大抑制率达到14%。在这项工作中,我们制备了具有低热导率的FeSb单晶,并且磁抑制热传输策略可应用于其他热电材料。