State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan430070, China.
School of Science, Wuhan University of Technology, Wuhan430070, China.
ACS Appl Mater Interfaces. 2023 Feb 15;15(6):8105-8119. doi: 10.1021/acsami.2c20778. Epub 2023 Feb 2.
The internal magnetism introduced by the magnetic nanoparticles combined with the external magnetic field can provide an effective way to modulate the thermoelectric (TE) properties of materials. Herein, we comparably investigate the effect of magnetism of FeO nanoparticles (FeO-NPs) and the external magnetic field on the cryogenic thermoelectric properties of FeO-NP/BiSb nanocomposites. With the ferromagnetism-superparamagnetism transition, the FeO-NPs in the superparamagnetic state exhibit a stronger magneto-trapped carrier effect, where the electron concentration at high temperature is evidently reduced. With the simultaneous increase of and reduction of electronic thermal conductivity, a high value of 0.33 at 180 K is obtained for 0.05 wt % FeO/BiSb. Meanwhile, under the external magnetic field, the magnetoresistance of the composites is suppressed by FeO-NPs, which results in a remarkable enhancement of the electronic transport performance. Consequently, the highest value of 0.48 at 220 K under 1 T is achieved for 0.1 wt % FeO-NPs/BiSb, increased by 55% compared with that of the matrix. A single-leg device is prepared using 0.1 wt % FeO-NP/BiSb nanocomposites. Its cooling temperature difference at 180 K reaches 1.3 and 3.2 K under 0 and 1 T when applying 300 mA current, increased by 20 and 46% compared with that of the matrix, respectively. This work suggests that magnetism modulation with introducing magnetic nanoparticles will enhance the TE and magneto-TE performance of composite materials.
内部磁性与外加磁场相结合,可以为材料的热电器件性能提供一种有效的调制方式。本文通过比较,研究了磁性纳米颗粒 FeO 的磁性以及外加磁场对 FeO-NP/BiSb 纳米复合材料低温热电性能的影响。由于 FeO 纳米颗粒具有铁磁性-超顺磁性转变,超顺磁状态下的 FeO 纳米颗粒表现出更强的磁捕获载流子效应,高温下的电子浓度明显降低。随着 和电子热导率的同时增加,在 0.05wt%FeO/BiSb 中获得了 0.33 的高 值,温度为 180 K。同时,在外加磁场下,复合材料的磁电阻被 FeO 纳米颗粒抑制,从而显著提高了电子输运性能。因此,在 0.1wt%FeO-NPs/BiSb 中获得了在 220 K 下 1 T 时的 0.48 的 值,与基体相比提高了 55%。使用 0.1wt%FeO-NP/BiSb 纳米复合材料制备了单腿器件。在施加 300 mA 电流时,0 和 1 T 下的冷却温差在 180 K 时分别达到 1.3 和 3.2 K,与基体相比分别提高了 20%和 46%。这项工作表明,通过引入磁性纳米颗粒进行磁性调制,可以提高复合材料的热电和磁热电性能。