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首页> 外文期刊>ACS Omega >HPHT Synthesis: Effects of the Synergy of Pressure Regulation and Atom Filling on the Microstructure and Thermoelectric Properties of YbxBa8–xGa16Ge30
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HPHT Synthesis: Effects of the Synergy of Pressure Regulation and Atom Filling on the Microstructure and Thermoelectric Properties of YbxBa8–xGa16Ge30

机译:HPHT合成:压力调节协同作用的影响和原子填充YBXBA8-XGA16Ge30的微观结构和热电性能

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Type-I clathrate compounds Yb_(x) Ba_(8–x )Ga_(16)Ge_(30) have been synthesized by the high-pressure and high-temperature (HPHT) method rapidly. The effects of the synergy of atom filling and pressure regulation on the microstructure and thermal and electrical properties have been investigated. With the content of Yb atom increasing, the carrier concentration is improved, the electrical resistivity and the absolute Seebeck coefficient are decreased, while the thermal conductivity is reduced significantly. A series of extremely low lattice thermal conductivities are achieved, attributed to the enhancement of multiscale phonon scattering for the “rattling” of the filled guest atoms, the heterogeneous distribution of nano- and microstructures, grain boundaries, abundant lattice distortions, lattice deformations, and dislocations. As a result, a maximum ZT of about 1.07 at 873 K has achieved for the Yb_(0.5)Ba_(7.5)Ga_(16)Ge_(30) sample.
机译:I型Clathrate化合物Yb _(x)Ba_(8- x)Ga_(16)Ga_(16)Ge_(30)通过高压和高温(HPHT)方法迅速地合成。研究了原子填充和压力调节协同作用对微观结构和热和电性能的影响。随着YB原子的含量增加,提高了载流子浓度,电阻率和绝对耳塞系数减小,而导热率显着降低。实现了一系列极低的晶格热导流率,归因于多尺度声子散射的增强,用于填充的客体原子的“嘎嘎声”,纳米和微观结构,晶界,丰富的扭曲,晶格变形和晶格变形的异质分布脱臼。结果,对于YB_(0.5)BA_(7.5)GA_(16)GE_(30)样品,实现了873k约1.07的最大 Zt。

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