CSpace
Optimizing thermoelectric properties of BiSe through Cu additive enhanced effective mass and phonon scattering
Shen, Xing-Chen1,2,3; Zhang, Xiao4; Zhang, Bin4; Wang, Guo-Yu2,5; He, Jian3; Zhou, Xiao-Yuan1,4
2020-07-17
摘要Known as a weak topological insulator (TI), BiSe structurally exhibits alternating stacks of quantum spin Hall bilayer ("Bi-2") and three-dimensional TI layer ("Bi2Se3"). The low lattice thermal conductivity of BiSe due to the presence of Bi(2)bilayers promises potentially good thermoelectric performance. Herein, the thermoelectric properties of nominal Bi1-xCuxSe samples were studied as the functions of the content of Cu additive and temperature. It is found that Cu additives in BiSe (1) profoundly affect the texture of densified polycrystalline samples by inclining the crystallographicc-axis parallel toward the pressure direction in the densification process, (2) increase considerably the effective mass and thus the Seebeck coefficient, and (3) yield point defects and Cu-Se secondary phases that effectively scatter heat-carrying phonons. As a result, the optimized electrical and thermal properties yield a thermoelectric figure of merit ofzT similar to 0.29 in Bi1-xCuxSe (x = 0.03) sample at 467 K in parallel to the pressure direction and azT similar to 0.20 at 468 K in the perpendicular direction. Graphic abstract
关键词Cu additives Phonon scattering Effective mass Texture Thermoelectric
DOI10.1007/s12598-020-01491-5
发表期刊RARE METALS
ISSN1001-0521
页码9
通讯作者Zhou, Xiao-Yuan(xiaoyuan2013@cqu.edu.cn)
收录类别SCI
WOS记录号WOS:000549669500003
语种英语