材料科学
锌
兴奋剂
锆
热电效应
氧化锆
铝
冶金
氧化物
氧化铝
无机化学
热电材料
复合材料
光电子学
化学
物理
热力学
热导率
作者
Kiryl Zakharchuk,David M. Tobaldi,Xingxing Xiao,Wenjie Xie,Sergey M. Mikhalev,João Martins,Jorge R. Frade,Anke Weidenkaff,Andrei V. Kovalevsky
标识
DOI:10.1016/j.jeurceramsoc.2018.11.029
摘要
Abstract This work aims to explore zirconium as a possible dopant to promote thermoelectric performance in bulk ZnO-based materials, both within the single-doping concept and on simultaneous co-doping with aluminum. At 1100–1223 K mixed-doped samples demonstrated around ∼2.3 times increase in ZT as compared to single-doped materials, reaching ∼0.12. The simultaneous presence of aluminum and zirconium imposes a synergistic effect on electrical properties provided by their mutual effects on the solubility in ZnO crystal lattice, while also allowing a moderate decrease of the thermal conductivity due to phonon scattering effects. At 1173 K the power factor of mixed-doped Zn0.994Al0.003Zr0.003O was 2.2–2.5 times higher than for single-doped materials. Stability tests of the prepared materials under prospective operation conditions indicated that the gradual increase in both resistivity and Seebeck coefficient in mixed-doped compositions with time may partially compensate each other to maintain a relatively high power factor.
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