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首页> 外文期刊>Indian Journal of Pure & Applied Physics >Preparation and thermoelectric properties of the rare earths doped Ca0.95RE0.05MnO3 (RE=Pr, Eu and Tb) oxide materials
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Preparation and thermoelectric properties of the rare earths doped Ca0.95RE0.05MnO3 (RE=Pr, Eu and Tb) oxide materials

机译:稀土掺杂Ca0.95RE0.05MnO3(RE = Pr,Eu和Tb)氧化物材料的制备及热电性能

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摘要

The rare earths doped Ca0.95RE0.05MnO3 (RE=Pr, Eu, Tb) oxide bulk materials are fabricated and the effects of rare earths doping within low content on the thermoelectric transport properties of the CaMnO3 oxide have been investigated. The results show that all doped oxide bulk materials are single phase with consolidated microstructure. The electrical resistivity is remarkably reduced on account of electron carrier density and mobility enhancement. The Seebeck coefficient is simultaneously reduced and the total thermal conductivity is decreased due to phonon thermal conduction confinement. The thermoelectric figure of merit ZT is improved with peak values of 0.12, 0.12 and 0.09 at 973 K for the Pr, Eu and Tb doped CaMnO3 oxide materials, respectively, which are very much higher than that of the undoped oxide material.
机译:制备了稀土掺杂Ca0.95RE0.05MnO3(RE = Pr,Eu,Tb)氧化物块状材料,研究了低含量稀土掺杂对CaMnO3氧化物热电输运性能的影响。结果表明,所有掺杂的氧化物块状材料均为单相,具有固结的微观结构。由于电子载流子密度和迁移率的提高,电阻率显着降低。由于声子导热限制,塞贝克系数同时降低,总导热率降低。掺杂Pr,Eu和Tb的CaMnO3氧化物材料的热电品质因数ZT分别以973 K处的0.12、0.12和0.09的峰值得到了改善,远高于未掺杂的氧化物材料。

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