材料科学
热电效应
三元运算
有效质量(弹簧-质量系统)
声子散射
热导率
功勋
热电材料
带隙
电子迁移率
声子
凝聚态物理
光电子学
复合材料
热力学
物理
量子力学
计算机科学
程序设计语言
作者
Sima Aminorroaya Yamini,Heng Wang,Dianta Ginting,David R. G. Mitchell,Shi Xue Dou,G. Jeffrey Snyder
摘要
Lead chalcogenides (PbQ, Q = Te, Se, S) have proved to possess high thermoelectric efficiency for both n-type and p-type compounds. Recent success in tuning of electronic band structure, including manipulating the band gap, multiple bands, or introducing resonant states, has led to a significant improvement in the thermoelectric performance of p-type lead chalcogenides compared to the n-type ones. Here, the n-type quaternary composites of (PbTe)0.75(PbS)0.15(PbSe)0.1 are studied to evaluate the effects of nanostructuring on lattice thermal conductivity, carrier mobility, and effective mass variation. The results are compared with the similar ternary systems of (PbTe)1–x(PbSe)x, (PbSe)1–x(PbS)x, and (PbS)1–x(PbTe)x. The reduction in the lattice thermal conductivity owing to phonon scattering at the defects and interfaces was found to be compensated by reduced carrier mobility. This results in a maximum figure of merit, zT, of ∼1.1 at 800 K similar to the performance of the single phase alloys of PbTe, PbSe, and (PbTe)1–x(PbSe)x.
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