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Synthesis, crystal structures and high-temperature thermoelectric properties of spinel-type cobalt ruthenium oxides

机译:尖晶石型钴钌氧化物的合成,晶体结构及高温热电性能

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摘要

Solid solutions of spinel-type cobalt-ruthenium oxides Co_(3-x)Ru_xO_y (0.50 < = x < = 0.70, y = 3.8-3.9) were prepared from Co_3O_4 and RuO_2 powders by solid-state reaction at 1173-1273 K in air. The crystal structures of the solid solutions were refined by Rietveld analysis of powder X-ray diffraction (XRD) patterns. The solid solutions crystallized in cubic cells (space group: Fd3-barm) with formal compositions of (Co)_(tet)[Co_(2-x)Ru_x]_(oct)O_y, where tet refers to the tetrahedral site and oct the octahedral one. The electrical transport property of the solid solutions exhibited semiconducting behavior and positive Seebeck coefficient in the temperature range from 298 to 1073 K. The thermal conductivity increased with increasing temperature. The maximum dimensionless figure of merit of 0.024 was measured for Co_(2.35)Ru_(0.65)O_(3.86) at 973 K.
机译:由Co_3O_4和RuO_2粉末在1173-1273 K下于室温固相反应制备了尖晶石型钴钌氧化物Co_(3-x)Ru_xO_y(0.50 <= x <= 0.70,y = 3.8-3.9)的固溶体空气。固溶体的晶体结构通过粉末X射线衍射(XRD)图的Rietveld分析进行精制。固溶体在立方晶格(空间群:Fd3-barm)中结晶,其正式组成为(Co)_(tet)[Co_(2-x)Ru_x] _(oct)O_y,其中tet表示四面体位点和oct八面体之一。固溶体的电传输性质在298至1073 K的温度范围内表现出半导体行为和塞贝克系数为正。导热系数随温度的升高而增加。在973 K下测得Co_(2.35)Ru_(0.65)O_(3.86)的最大无量纲品质因数为0.024。

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