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Enhancing the thermoelectric properties of single and double filled p-type skutterudites synthesized by an up-scaled ball-milling processud

机译:增强通过扩大球磨工艺合成的单和双填充p型方钴矿的热电性能 ud

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摘要

The single and double filled p-type skutterudites Ce0.8Fe3CoSb12 and Ce0.5Yb0.5Fe3.25Co0.75Sb12 have been prepared by mechanical alloying. This offers a rapidudmethod for the preparation of skutterudites that could be scaled up for adoption at industrial level. The large-scale samples prepared by ball-milling exhibit enhanced figures of merit ZT, compared with materials prepared by conventional solid-state reaction. At room temperatureudZT is increased by ca. 19 % for both single and double filled skutterudites. Maximum figures of merit, ZT = 0.68 and ZT = 0.93 are attained for Ce0.8Fe3CoSb12 at 773 K and Ce0.5Yb0.5Fe3.25Co0.75Sb12 at 823 K respectively. The improvement in thermoelectric values at room temperature may be traced to a reduction in thermal conductivity in the ball-milled samples arising from the reduced grain size. The influence of the microstructure on the thermoelectric properties, together with the stability in air and the performance of the materials after severaludheating and cooling cycles has been studied and are detailed in this work. The densified samples prepared by ball-milling also show a higher resistance to oxidation, which starts at 694 K for Ce0.8Fe3CoSb12 and at 783 K for Ce0.5Yb0.5Fe3.25Co0.75Sb12.
机译:通过机械合金化制备了单和双填充的p型方钴矿Ce0.8Fe3CoSb12和Ce0.5Yb0.5Fe3.25Co0.75Sb12。这为制备方钴矿提供了快速的方法,该方法可以扩大规模以在工业水平上采用。与通过常规固态反应制备的材料相比,通过球磨制备的大规模样品显示出更高的品质因数ZT。在室温下,udZT增加约。单填充和双填充skutterudite的含量均为19%。 Ce0.8Fe3CoSb12在773 K和Ce0.5Yb0.5Fe3.25Co0.75Sb12在823 K时分别获得最高品质因数ZT = 0.68和ZT = 0.93。室温下热电值的提高可归因于球磨样品中由于减小的晶粒尺寸而引起的热导率的降低。研究了微观结构对热电性能的影响,以及空气在多次加热和冷却和冷却后的稳定性以及材料的性能,并在这项工作中进行了详细介绍。通过球磨制备的致密化样品还显示出更高的抗氧化性,对于Ce0.8Fe3CoSb12,抗氧化性从694 K开始;对于Ce0.5Yb0.5Fe3.25Co0.75Sb12,抗氧化性从783 K开始。

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