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Effect of cation stoichiometry on the transport properties of calcium ruthenium oxide ceramics

机译:阳离子化学计量对氧化钙钌氧化物陶瓷传输性能的影响

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Seebeck coefficient and electrical resistivity have been determined on a series of compounds having the general composition CanRu1-nOy . From property and structural considerations, these compounds have been divided into two categories: one group resembling Ca2RuO4 and the second category exhibiting properties similar to CaRuO3. While the former is an antiferromagnetic insulator, the latter is a paramagnetic metal. The Seebeck coefficient remains relatively unchanged within the members of the two groups, irrespective of the molar ratios of the cations. Even between the two groups of compounds, the Seebeck coefficient exhibits minimal difference even as the cation ratio (Ru/Ca) of the compounds is varied from 0.35 (n = 0.74) to 1.94 (n = 0.34). The resistivity, however, varies by nine orders of magnitude as the cation ratio is varied in the same range. Consequently, the resulting power factor (s (2)sigma, where s is the Seebeck coefficient and sigma is the electrical conductivity), which is a measure of the usefulness or thermopower conversion efficiency of a thermoelectric material, is found to vary by nine orders of magnitude.
机译:已经确定了一系列具有一般组成CanRu1-nOy的化合物的塞贝克系数和电阻率。从性能和结构上考虑,这些化合物分为两类:一类类似于Ca2RuO4,另一类具有与CaRuO3相似的性能。前者是反铁磁绝缘体,后者是顺磁性金属。塞贝克系数在两组的成员内保持相对不变,而与阳离子的摩尔比无关。即使在两组化合物之间,即使化合物的阳离子比(Ru / Ca)从0.35(n = 0.74)到1.94(n = 0.34)变化,塞贝克系数也显示出最小的差异。然而,随着阳离子比率在相同范围内变化,电阻率变化了九个数量级。因此,发现功率因数(s(2)sigma,其中s是塞贝克系数,sigma是电导率),它是热电材料的有用性或热电转换效率的量度,变化了九个数量级。数量级。

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