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Crystal grain size dependence of thermoelectric properties for sintered PbTe by spark plasma sintering technique

机译:放电等离子体烧结技术烧结PbTe的热电性能与晶粒尺寸的关系

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Thermal and electrical conduction parameters of the sintered PbTe with different crystal grain sizes Ds were measured over the temperature range from 77 to 350 K, to examine the possibility of improvement in thermoelectric performance for sintered PbTe by reducing D. The starting powders with particle sizes of 6, 39, 180 and 380 /spl mu/m were obtained by pulverizing an undoped PbTe boule prepared by the Bridgman method. Sintering was carried out by the spark plasma sintering technique (SPS) under the conditions of sintering temperature of 732-803 K, sintering duration of 60-90 min and sintering pressure of 45 MPa. All the sintered compacts, whose conduction type was p-type, had an apparent relative density of more than 99%. Thermal conductivity /spl kappa/ decreased with reducing D below 200 K, but showed no dependence on D above 200 K. Long-wave phonons are scattered efficiently at grain boundaries only below 200 K. Hall mobility /spl mu//sub H/ of the sintered compacts with different Ds were almost same above 200 K. It is concluded that thermoelectric performance for sintered PbTe is not directly affected by controlling D.
机译:在77至350 K的温度范围内测量了具有不同晶粒度Ds的PbTe烧结体的热和电导率参数,以检验通过降低D来改善PbTe烧结体的热电性能的可能性。通过将通过Bridgman方法制备的未掺杂的PbTe晶锭粉碎,得到6、39、180和380 /splμm/ m。通过火花等离子体烧结技术(SPS)在烧结温度为732-803K,烧结时间为60-90min,烧结压力为45MPa的条件下进行烧结。导电型为p型的所有烧结体的表观相对密度均超过99%。导热系数/ spl kappa /随D在200 K以下的降低而降低,但对D高于200 K则没有依赖性。长波声子仅在200 K以下才有效地散射在晶界处。霍尔迁移率/ spl mu // sub H /在200 K以上,具有不同Ds的烧结体几乎相同。结论是,控制D不会直接影响PbTe烧结体的热电性能。

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