Shi Zongmo, Han Zhen, Huang Wei, Zhang Ying, Wei Jian, Zhang Xinwei, Chen Chanli, Zhang Junzhan
College of Materials Science and Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, P. R. China.
College of Civil Engineering, Xi'an University of Architecture & Technology, Xi'an 710055, P. R.China.
ACS Appl Mater Interfaces. 2024 Aug 21;16(33):43617-43625. doi: 10.1021/acsami.4c08856. Epub 2024 Aug 12.
As attractive thermoelectric oxides, CaCoO-based materials have been intensively studied for their applications in recent years. However, their thermoelectric performance is enormously limited due to the contradiction of electrical resistivity and thermal conductivity. Herein, BaFeO nanospheres were introduced into the CaCoO matrix. The metallic Ag, ferrites, and matrix phase survived together, and a high density of nanoscale BaFeO precipitation was observed. The reduction of work function could lead to band bending and form an interface potential due to the electro-thermo-magnetic effect contributing to the hole migration. As a result, a huge ZT value of 0.51 for the 8 wt % BaFeO/CaCoO nanocomposites was obtained at 1073 K, accompanied by a low electrical resistivity of 6.7 mΩ·cm and a high Seebeck coefficient of 217.5 μV/K. In addition, a significant reduction of thermal conductivity (1.11 W/(m·K)) occurred, which was due to the nanoscale ferromagnetic phase effectively scattering the mid- and short-wavelength heat-carrying phonons. The synergistic enhancement of thermoelectric performance confirmed that the electro-thermo-magnetic effect is an effective way to solve the challenging problem of performance deterioration in oxide thermoelectric materials.
作为具有吸引力的热电氧化物,近年来基于CaCoO的材料因其应用而受到深入研究。然而,由于电阻率和热导率之间的矛盾,它们的热电性能受到极大限制。在此,将BaFeO纳米球引入CaCoO基体中。金属Ag、铁氧体和基体相共存,并且观察到高密度的纳米级BaFeO沉淀。功函数的降低会由于有助于空穴迁移的电热磁效应导致能带弯曲并形成界面电位。结果,在1073 K时,8 wt% BaFeO/CaCoO纳米复合材料获得了0.51的巨大ZT值,同时具有6.7 mΩ·cm的低电阻率和217.5 μV/K的高塞贝克系数。此外,热导率显著降低(1.11 W/(m·K)),这是由于纳米级铁磁相有效地散射了中短波载热声子。热电性能的协同增强证实,电热磁效应是解决氧化物热电材料性能恶化这一具有挑战性问题的有效方法。