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Structural and Thermoelectric Properties of Cu Substituted Type I Clathrates Ba8CuxSi~32−xGa~14

机译:Cu取代的I型包合物Ba8CuxSi〜32-xGa〜14的结构和热电性质

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摘要

With an attempt to improve the thermoelectric properties of type I clathrates in the Ba-Ga-Si system, we introduce Cu into the framework of the crystal structure. Single crystals are prepared in Ga-flux and characterized by X-ray diffraction techniques and transport measurements for the structural and thermoelectric properties. Our composition analyses show that only a small amount of Cu is determined in the clathrates. The single crystal X-ray diffraction data refinements confirm that Ga atoms prefer the 6c and 24k sites and avoid the 16i sites in the crystal structure. The small amount of Cu affects the crystal structure by compressing the tetrakaidecahedral cage along the direction perpendicular to the six-atom-ring plane. This could be the reason for the high charge carrier concentration, and low electrical resistivity and Seebeck coefficient. We analyze the principal mechanism for our observation and conclude that the Cu substitution can adjust some subtle details of the structure, maintaining the Zintl rule in the type I clathrates.
机译:为了改善Ba-Ga-Si系统中I型笼形物的热电性能,我们将Cu引入晶体结构的框架中。用Ga-flux制备单晶,并通过X射线衍射技术和传输测量来表征结构和热电性能。我们的组成分析表明,包合物中仅测定了少量的Cu。单晶X射线衍射数据的精炼证实,Ga原子更喜欢6c和24k位,并避免了晶体结构中的16i位。少量的铜会通过沿垂直于六原子环平面的方向压缩四面十二面体笼而影响晶体结构。这可能是电荷载流子浓度高,电阻率和塞贝克系数低的原因。我们分析了观察的主要机理,并得出结论,铜取代可以调整结构的一些细微细节,从而使Zintl规则保持在I型笼形中。

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