Department of Physics, Boston College, Chestnut Hill, Massachusetts 02467, USA.
J Am Chem Soc. 2012 Jun 20;134(24):10031-8. doi: 10.1021/ja301245b. Epub 2012 Jun 7.
We present detailed studies of potassium doping in PbTe(1-y)Se(y) (y = 0, 0.15, 0.25, 0.75, 0.85, 0.95, and 1). It was found that Se increases the doping concentration of K in PbTe as a result of the balance of electronegativity and also lowers the lattice thermal conductivity because of the increased number of point defects. Tuning the composition and carrier concentration to increase the density of states around the Fermi level results in higher Seebeck coefficients for the two valence bands of PbTe(1-y)Se(y). Peak thermoelectric figure of merit (ZT) values of ~1.6 and ~1.7 were obtained for Te-rich K(0.02)Pb(0.98)Te(0.75)Se(0.25) at 773 K and Se-rich K(0.02)Pb(0.98)Te(0.15)Se(0.85) at 873 K, respectively. However, the average ZT was higher in Te-rich compositions than in Se-rich compositions, with the best found in K(0.02)Pb(0.98)Te(0.75)Se(0.25). Such a result is due to the improved electron transport afforded by heavy K doping with the assistance of Se.
我们对 PbTe(1-y)Se(y)(y = 0、0.15、0.25、0.75、0.85、0.95 和 1)中的钾掺杂进行了详细研究。结果发现,由于电负性的平衡,硒增加了 K 在 PbTe 中的掺杂浓度,并且由于点缺陷数量的增加,降低了晶格热导率。通过调整组成和载流子浓度来增加费米能级附近的态密度,导致 PbTe(1-y)Se(y)的两个价带的 Seebeck 系数更高。在 773 K 时,Te 丰富的 K(0.02)Pb(0.98)Te(0.75)Se(0.25)和在 873 K 时,Se 丰富的 K(0.02)Pb(0.98)Te(0.15)Se(0.85)分别获得了约 1.6 和 1.7 的峰值热电优值(ZT)值。然而,Te 丰富的组成中的平均 ZT 值高于 Se 丰富的组成中的平均 ZT 值,其中最佳值出现在 K(0.02)Pb(0.98)Te(0.75)Se(0.25)中。这种结果是由于 Se 的辅助下,重 K 掺杂改善了电子输运。