Department of Chemistry, Northwestern University, Evanston, Illinois 60208, USA.
J Am Chem Soc. 2010 Apr 14;132(14):5227-35. doi: 10.1021/ja910762q.
We explored the effect of Cd substitution on the thermoelectric properties of PbTe in an effort to test a theoretical hypothesis that Cd atoms on Pb sites of the rock salt lattice can increase the Seebeck coefficient via the formation of a resonance level in the density of states near the Fermi energy. We find that the solubility of Cd is less than previously reported, and CdTe precipitation occurs to create nanostructuring, which strongly suppresses the lattice thermal conductivity. We present detailed characterization including structural and spectroscopic data, transmission electron microscopy, and thermoelectric transport properties of samples of PbTe-x% CdTe-0.055% PbI(2) (x = 1, 3, 5, 7, 10), PbTe-1% CdTe-y% PbI(2) (y = 0.03, 0.045, 0.055, 0.08, 0.1, 0.2), PbTe-5% CdTe-y% PbI(2) (y = 0.01, 0.03, 0.055, 0.08), and PbTe-1% CdTe-z% Sb (z = 0.3, 0.5, 1, 1.5, 2, 3, 4, 5, 6). All samples follow the Pisarenko relationship, and no enhancement of the Seebeck coefficient was observed that could be attributed to a resonance level or a distortion in the density of states. A maximum ZT of approximately 1.2 at approximately 720 K was achieved for the PbTe-1% CdTe-0.055% PbI(2) sample arising from a high power factor of approximately 17 microW/(cm K(2)) and a very low lattice thermal conductivity of approximately 0.5 W/(m K) at approximately 720 K.
我们研究了 Cd 取代对 PbTe 热电性能的影响,以检验一个理论假设,即在岩盐晶格的 Pb 位上的 Cd 原子可以通过在费米能级附近的态密度中形成共振能级来提高 Seebeck 系数。我们发现 Cd 的溶解度低于之前的报道,并且 CdTe 沉淀会产生纳米结构,从而强烈抑制晶格热导率。我们提供了详细的表征,包括结构和光谱数据、透射电子显微镜和 PbTe-x%CdTe-0.055%PbI(2)(x = 1,3,5,7,10)、PbTe-1%CdTe-y%PbI(2)(y = 0.03,0.045,0.055,0.08,0.1,0.2)、PbTe-5%CdTe-y%PbI(2)(y = 0.01,0.03,0.055,0.08)和 PbTe-1%CdTe-z%Sb(z = 0.3,0.5,1,1.5,2,3,4,5,6)的热电输运性能的样品。所有样品都遵循 Pisarenko 关系,没有观察到 Seebeck 系数的增强,这可能归因于共振能级或态密度的畸变。PbTe-1%CdTe-0.055%PbI(2)样品在约 720 K 时的 ZT 值约为 1.2,这是由于其功率因子约为 17 μW/(cm K(2))和晶格热导率约为 0.5 W/(m K)非常低。