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High-temperature transport properties of complex antimonides with anti-Th3P4 structure

机译:具有抗Th3P4结构的复杂锑化物的高温传输性能

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摘要

Polycrystalline samples of R4Sb3 (R = La, Ce, Smand Yb) and Yb4-xR'Sb-x(3)(R' = Sm and La) have been quantitatively synthesized by high-temperature reaction. They crystallize in the anti-Th3P4 structure type (I (4) over bar 3d, no. 220). Structural and chemical characterizations have been performed by X-ray diffraction and electron microscopy with energy dispersive X-ray analysis. Powders have been densified by spark plasma sintering (SPS) at 1300 degrees C under 50 MPa of pressure. Transport property measurements show that these compounds are n-type with low Seebeck coefficient except for Yb4Sb3 that shows a typical metallic behavior with hole conduction. By partially substituting Yb by a trivalent rare earth we successfully improved the thermoelectric figure of merit of Yb4-xR'Sb-x(3) up to 0.75 at 1000 degrees C.
机译:R4Sb3(R = La,Ce,Smand Yb)和Yb4-xR'Sb-x(3)(R'= Sm和La)的多晶样品已通过高温反应定量合成。它们以抗Th3P4结构类型(I(4)在晶格3d,编号220)上结晶。结构和化学表征已通过X射线衍射和电子显微镜进行了能量色散X射线分析。粉末已经通过火花等离子体烧结(SPS)在1300摄氏度,50兆帕的压力下致密化。传输性质的测量表明,这些化合物是低塞贝克系数的n型化合物,但Yb4Sb3除外,后者显示出典型的具有空穴传导性的金属行为。通过用三价稀土部分取代Yb,我们成功地将Yb4-xR'Sb-x(3)的热电品质因数在1000摄氏度下提高到0.75。

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