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首页> 外文期刊>RSC Advances >Improvement of electrical conductivity in Pb0.96-yMn0.04SnyTe alloys for high temperature thermoelectric applications
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Improvement of electrical conductivity in Pb0.96-yMn0.04SnyTe alloys for high temperature thermoelectric applications

机译:用于高温热电应用的Pb0.96-yMn0.04SnyTe合金中电导率的改善

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摘要

Lead-tin-telluride is a well-known thermoelectric material in the temperature range 350-750 K. Here, this alloy doped with manganese (Pb0.96-yMn0.04SnyTe) was prepared for different amounts of tin. X-ray diffraction showed a decrease of the lattice constant with increasing tin content, which indicated solid solution formation. Microstructural analysis showed a wide distribution of grain sizes from <1 mu m to 10 mm and the presence of a SnTe rich phase. All the transport properties were measured in the range of 300-720 K. The Seebeck coefficient showed that all the samples were p-type indicating holes as dominant carriers in the measurement range. The magnitude increased systematically on reduction of the Sn content due to possible decreasing hole concentration. Electrical conductivity showed the degenerate nature of the samples. Large values of the electrical conductivity could have possibly resulted from a large hole concentration due to a high Sn content and secondly, due to increased mobility by sp-d orbital interaction between the Pb1-ySnyTe sublattice and the Mn2+ ions. High thermal conductivity was observed due to higher electronic contribution, which decreased systematically with decreasing Sn content. The highest zT = 0.82 at 720 K was obtained for the alloy with the lowest Sn content (y = 0.56) due to the optimum doping level.
机译:碲化铅锡是在350-750 K的温度范围内的一种众所周知的热电材料。在此,针对不同的锡量制备了这种掺有锰(Pb0.96-yMn0.04SnyTe)的合金。 X射线衍射表明,随着锡含量的增加,晶格常数降低,这表明形成固溶体。显微组织分析表明,晶粒尺寸分布广泛,从<1微米到10毫米不等,并且富含SnTe。在300-720 K范围内测量了所有传输性能。塞贝克系数表明,所有样品均为p型,表明在测量范围内空穴为主要载流子。由于可能降低的空穴浓度,随着Sn含量的减少,该量级系统地增加。电导率显示出样品的简并性质。大的空穴浓度可能归因于高的Sn含量,其次是由于Pb1-ySnyTe亚晶格和Mn2 +离子之间通过sp-d轨道相互作用而增加的迁移率,从而导致了较大的电导率值。由于较高的电子贡献而观察到高的热导率,其随着Sn含量的降低而系统地降低。由于最佳掺杂水平,锡含量最低(y = 0.56)的合金在720 K时可获得最高zT = 0.82。

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