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Structure and Transport Properties of Dense Polycrystalline Clathrate-II (KBa)16(GaSn)136 Synthesized by a New Approach Employing SPS

机译:采用SPS的新方法合成致密多晶包合物II(KBa)16(GaSn)136的结构和输运性质

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摘要

Tin clathrate-II framework-substituted compositions are of current interest as potential thermoelectric materials for medium-temperature applications. A review of the literature reveals different compositions reported with varying physical properties, which depend strongly on the exact composition as well as the processing conditions. We therefore initiated an approach whereby single crystals of two different (K,Ba)16(Ga,Sn)136 compositions were first obtained, followed by grinding of the crystals into fine powder for low temperature spark plasma sintering consolidation into dense polycrystalline solids and subsequent high temperature transport measurements. Powder X-ray refinement results indicate that the hexakaidecahedra are empty, K and Ba occupying only the decahedra. Their electrical properties depend on composition and have very low thermal conductivities. The structural and transport properties of these materials are compared to that of other Sn clathrate-II compositions.
机译:笼形锡II骨架取代的锡组合物作为中温应用的潜在热电材料目前是令人关注的。对文献的回顾揭示了所报道的具有不同物理性质的不同组成,这在很大程度上取决于确切的组成以及加工条件。因此,我们启动了一种方法,首先获得两种不同(K,Ba)16(Ga,Sn)136组成的单晶,然后将晶体研磨成细粉,以进行低温火花等离子体烧结固结成致密的多晶固体,随后高温运输测量。 X射线粉末细化结果表明六面体为空,K和Ba仅占据十面体。它们的电性能取决于组成并且具有非常低的热导率。将这些材料的结构和传输性能与其他Sn包合物II组合物进行了比较。

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