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Chemical stability of Ca3Co4-xO9+delta/CaMnO3-delta p-n junction for oxide-based thermoelectric generators

机译:Ca3Co4-XO9 + DELTA / CAMNO3-DELTA P-N结的化学稳定性基于氧化物的热电发电机

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摘要

An all-oxide thermoelectric generator for high-temperature operation depends on a low electrical resistance of the direct p-n junction. Ca3Co4-xO9+delta and CaMnO3-delta exhibit p-type and n-type electronic conductivity, respectively, and the interface between these compounds is the material system investigated here. The effect of heat treatment (at 900 degrees C for 10 h in air) on the phase and element distribution within this p-n junction was characterized using advanced transmission electron microscopy combined with X-ray diffraction. The heat treatment resulted in counter diffusion of Ca, Mn and Co cations across the junction, and subsequent formation of a Ca3Co1+yMn1-yO6 interlayer, in addition to precipitation of Co-oxide, and accompanying diffusion and redistribution of Ca across the junction. The Co/Mn ratio in Ca3Co1+yMn1-yO6 varies and is close to 1 (y = 0) at the Ca3Co1+yMn1-yO6-CaMnO3-delta boundary. The existence of a wide homogeneity range of 0 <= y <= 1 for Ca3Co1+yMn1-yO6 is corroborated with density functional theory (DFT) calculations showing a small negative mixing energy in the whole range.
机译:用于高温操作的全氧化物热电发电机取决于直接P-N结的低电阻。 CA3CO4-XO9 + DELTA和CAMNO3-DELTA分别表现出p型和n型电子电导率,并且这些化合物之间的界面是在此研究的材料体系。使用先进的透射电子显微镜与X射线衍射联合结合X射线衍射,热处理(在空气中为10小时的10小时)对该P-N结的相和元素分布的影响。热处理导致Ca,Mn和Co阳离子的反相扩散,以及随后形成Ca 3Co1 + Ymn1-Yo6中间层,除了共氧化物的沉淀,以及伴随整个交界处的Ca的扩散和再分布。 Ca3Co1 + YMN1-YO6中的CO / Mn比在CA3CO1 + YMN1-YO6-CAMNO3-DELTA边界处变化并接近1(y = 0)。对于CA3CO1 + YMN1-YO6的宽均匀度范围为0 <= Y <= 1的较小函数理论(DFT)计算,其显示在整个范围内的小负混合能量。

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