材料科学
碲化铋
热电效应
碲化铅
热电材料
声子散射
晶界
热导率
粒度
变形(气象学)
塞贝克系数
声子
复合材料
凝聚态物理
冶金
光电子学
兴奋剂
热力学
微观结构
物理
作者
Chenglong Xiong,Fanfan Shi,Hongxiang Wang,Jianfeng Cai,Simao Zhao,Xiaojian Tan,Haoyang Hu,Guoqiang Liu,Jacques Noudem,Jun Jiang
标识
DOI:10.1021/acsami.1c02417
摘要
Bismuth telluride has been the only commercial thermoelectric candidate, but the n-type sintered material lags well behind the p-type one in the zT value, which severely limits the further development of thermoelectrics. Here, we report a promising technique named hot-stacked deformation to effectively improve the thermoelectric properties of n-type Bi2Te2.79Se0.21 + 0.067 wt % BiCl3 materials based on zone-melting ingots. It is found that a high grain alignment is maintained during the plastic deformation and the carrier concentration is properly optimized owing to the donor-like effect, leading to an enhanced power factor. Moreover, the lattice thermal conductivity is obviously suppressed due to the emerged phonon scattering centers of dense grain boundaries and dislocations. These effects synergistically yield a maximum zT value of 1.38 and an average zTave of 1.18 between 300 and 500 K in the hot-stacked deformed sample, which is approximately 42% higher than those of the zone-melting ingots.
科研通智能强力驱动
Strongly Powered by AbleSci AI