塞贝克系数
热电效应
半金属
热电材料
材料科学
凝聚态物理
功率因数
电阻率和电导率
功率(物理)
物理
光电子学
热力学
硅
量子力学
作者
Yu Li,Chen Yang,Weifan Yang,Yiyao Jiang,Xinya Mao,Zhaoying Yan,Shenglong Zhu,Jingting Luo
摘要
Weyl semimetals are renowned for their intriguing physical properties and ultrahigh transverse thermoelectric power factor, but commonly exhibit exceedingly low Seebeck coefficient, and conventional strategies for the optimization of thermoelectric performance are unable to rectify this issue. In light of the distinct compensatory electronic structure inherent to semimetal materials, we propose an easy mechanism with the potential to achieve exceedingly high Seebeck power factors, by synergistic adjustment of the semimetal Fermi surface feature and temperature-dependent density of states. By diminishing the symmetrical distribution of electrons and holes in proximity to the Fermi surface, alongside the competitive Seebeck effect, we find a considerable surge in the Seebeck coefficient from ∼4/33 to 530/520 μV/K in the armchair/zigzag direction, respectively. Based on the ultrahigh power factor ∼14.6 W/mK2 achieved at 50 K, we highlight the potential of semimetallic materials as candidates for the next generation of flexible, high-performance thermoelectric devices.
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