碲
热电材料
热电效应
半导体
功勋
材料科学
带隙
简并能级
退化(生物学)
半金属
光电子学
元素分析
工程物理
凝聚态物理
纳米技术
物理
化学
热力学
量子力学
冶金
无机化学
生物
生物信息学
作者
Siqi Lin,Wen Li,Zhiwei Chen,Jiawen Shen,Binghui Ge,Yanzhong Pei
摘要
Abstract High-efficiency thermoelectric materials require a high conductivity. It is known that a large number of degenerate band valleys offers many conducting channels for improving the conductivity without detrimental effects on the other properties explicitly, and therefore, increases thermoelectric performance. In addition to the strategy of converging different bands, many semiconductors provide an inherent band nestification, equally enabling a large number of effective band valley degeneracy. Here we show as an example that a simple elemental semiconductor, tellurium, exhibits a high thermoelectric figure of merit of unity, not only demonstrating the concept but also filling up the high performance gap from 300 to 700 K for elemental thermoelectrics. The concept used here should be applicable in general for thermoelectrics with similar band features.
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