放电等离子烧结
热电效应
材料科学
兴奋剂
塞贝克系数
热导率
热电材料
声子散射
凝聚态物理
微晶
带隙
价(化学)
光电子学
烧结
化学
复合材料
热力学
物理
有机化学
冶金
作者
Mohammad Nisar,Adeel Abbas,Junze Zhang,Fu Li,Zhuanghao Zheng,Guangxing Liang,Ping Fan,Yuexing Chen
出处
期刊:Small
[Wiley]
日期:2024-04-21
卷期号:20 (32)
被引量:9
标识
DOI:10.1002/smll.202312003
摘要
Abstract Enhancing the thermoelectric performance of n‐type polycrystalline SnSe is essential, addressing challenges posed by elevated thermal conductivity and compromised power factor inherent in its intrinsic p‐type characteristics. This investigation utilized solid‐state reactions and spark plasma sintering techniques for the synthesis of n‐type SnSe. A significant improvement in the figure of merit (ZT) is achieved through strategic reduction in Se concentration and optimization of crystal orientation. The co‐doping with Br and Ge further improves the material; Br amplifies carrier concentration, enhancing electrical conductivity, while Ge introduces effective phonon scattering centers. In the Br/Ge co‐doped SnSe sample, thermal conductivity dropped to 0.38 Wm⁻¹K⁻¹, yielding a remarkable power factor of 662 µW mK − 2 at 773 K, culminating in a ZT of 1.34. This signifies a noteworthy 605% improvement over the pristine sample, underscoring the pivotal role of Ge doping in enhancing n‐type material thermoelectric properties. The enhancement is attributed to Br doping introducing additional electronic states near the valence band, and Ge doping modifying the band structure, fostering resonant states near the conduction band. The Br/Ge co‐doping further transforms the band structure, influencing electrical conductivity, Seebeck coefficient, and thermal conductivity, advancing the understanding and application of n‐type SnSe materials for superior thermoelectric performance.
科研通智能强力驱动
Strongly Powered by AbleSci AI