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Thermoelectric properties and crystallographic shear structures in titanium oxides of the Magneli phases

机译:Magneli相的钛氧化物的热电性质和晶体剪切结构

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摘要

The thermoelectric properties of Magnèli phase titanium oxides TinO2n−1 n=2, 3, ... have been investigated, paying special attention to how the thermoelectric performance can be altered by changing the microstructure. Dense polycrystalline specimens with nominal composition of TiO2−x x=0.05, 0.10, 0.15, and 0.20 prepared by conventional hot-pressing are all identified to be one of the Magnèli phases, in which crystallographic shear planes are regularly introduced according to the oxygen deficiency. Electrical conduction is n-type for all specimens and the carrier concentration increases with the increase in the oxygen deficiency. The values of lattice thermal conductivity, on the other hand, decrease with the increase in the oxygen deficiency, which can be attributed to phonon scattering at the crystallographic shear plane. The largest value of thermoelectric figure of merit Z, 1.6 10−4 K−1 was obtained at 773 K for the hot-pressed specimen of TiO1.90
机译:已经研究了Magnèli相钛氧化物TinO2n-1 n = 2,3,...的热电性能,特别注意如何通过改变微观结构来改变热电性能。通过常规热压制备的标称组成为TiO2-x x = 0.05、0.10、0.15和0.20的致密多晶标本均被确定为Magnèli相之一,其中根据氧的缺乏规律地引入了晶体剪切面。所有样品的电导率均为n型,并且载流子浓度随缺氧量的增加而增加。另一方面,晶格热导率的值随着氧缺乏的增加而降低,这可以归因于在晶体剪切面上的声子散射。对于TiO1.90的热压试样,在773 K处获得的热电品质因数Z的最大值为1.6 10-4 K-1

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