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Thermoelectric properties of copper selenide with ordered selenium layer and disordered copper layer

机译:有序硒层和无序铜层的硒化铜的热电性能

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Thermoelectric figure-of-merit (ZT) of ~1.6 at 700°C is achieved in Β-phase copper selenide (Cu _2Se) made by ball milling and hot pressing. The Β-phase of such material possesses a natural superlattice-like structure that combines ordered selenium (Se) and disordered copper (Cu) layers in its unit cell, resulting in a low lattice thermal conductivity of 0.4-0.5Wm ~(-1)K ~(-1). A λ-shaped specific heat peak indicates a phase transition from cubic Β-phase to tetragonal α-phase at around 140°C upon cooling and vice versa. An abnormal decrease in specific heat with increasing temperature was also observed due to the increased random motion of disordered Cu atoms. These features indicate that Β-phase Cu _2Se could be potentially an interesting thermoelectric material, competing with other conventional thermoelectric materials.
机译:在通过球磨和热压制成的Β相硒化铜(Cu _2Se)中,在700°C时可达到约1.6的热电品质因数(ZT)。这种材料的Β相具有自然的超晶格状结构,在其晶胞中结合了有序的硒(Se)和无序的铜(Cu)层,从而导致0.4-0.5Wm〜(-1)的低晶格导热率K〜(-1)。 λ形的比热峰表示冷却后在140°C时从立方Β相到四方α相的相变,反之亦然。由于无序Cu原子的随机运动增加,还观察到比热随温度升高而异常降低。这些特征表明,与其他常规热电材料竞争,γ-相Cu _2Se可能是一种有趣的热电材料。

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