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Excellent thermal stability and thermoelectric properties of Pnma-phase SnSe in middle temperature aerobic environment

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【作者】 唐语李德聪陈钟邓书平孙璐琪刘文婷申兰先邓书康

【Author】 Yu Tang;Decong Li;Zhong Chen;Shuping Deng;Luqi Sun;Wenting Liu;Lanxian Shen;Shukang Deng;Education Ministry Key Laboratory of Renewable Energy Advanced Materials and Manufacturing Technology,Yunnan Normal University;Photoelectric Engineering College, Yunnan Open University;

【通讯作者】 邓书康;

【机构】 Education Ministry Key Laboratory of Renewable Energy Advanced Materials and Manufacturing Technology,Yunnan Normal UniversityPhotoelectric Engineering College, Yunnan Open University

【摘要】 SnSe is considered to be a promising thermoelectric material due to a high ZT value and abundant and non-toxic composition elements. However, the thermal stability is an important issue for commercial application. In particular,thermoelectric materials are in the high temperature for a long time due to the working condition. The present work investigates the thermal stability and oxidation resistance of single crystal SnSe thermoelectric materials. The scanning electron microscopy(SEM) and transmission electron microscopy(TEM) results show that the internal of SnSe crystal is not easily oxidized, while the x-ray photoelectron spectroscopy(XPS) results indicate that the surface of SnSe is slight oxidized to SnO2. Even if the surface is oxidized, the SnSe crystal still exhibits stable thermoelectric properties. Meanwhile,the crystallization quality of SnSe samples can be improved after the appropriate heat treatment in the air, which is in favor of the carrier mobility and can improve the electrical conduction properties of SnSe. Moreover, the decrease of defect density after heat treatment can further improve the Seebeck coefficient and electrical transport properties of SnSe. The density functional theory(DFT) calculation verifies the important role of defect on the electrical conductivity and electron configuration. In summary, appropriate temperature annealing is an effective way to improve the transmission properties of SnSe single crystal thermoelectric materials.

【Abstract】 SnSe is considered to be a promising thermoelectric material due to a high ZT value and abundant and non-toxic composition elements. However, the thermal stability is an important issue for commercial application. In particular,thermoelectric materials are in the high temperature for a long time due to the working condition. The present work investigates the thermal stability and oxidation resistance of single crystal SnSe thermoelectric materials. The scanning electron microscopy(SEM) and transmission electron microscopy(TEM) results show that the internal of SnSe crystal is not easily oxidized, while the x-ray photoelectron spectroscopy(XPS) results indicate that the surface of SnSe is slight oxidized to SnO2. Even if the surface is oxidized, the SnSe crystal still exhibits stable thermoelectric properties. Meanwhile,the crystallization quality of SnSe samples can be improved after the appropriate heat treatment in the air, which is in favor of the carrier mobility and can improve the electrical conduction properties of SnSe. Moreover, the decrease of defect density after heat treatment can further improve the Seebeck coefficient and electrical transport properties of SnSe. The density functional theory(DFT) calculation verifies the important role of defect on the electrical conductivity and electron configuration. In summary, appropriate temperature annealing is an effective way to improve the transmission properties of SnSe single crystal thermoelectric materials.

【基金】 Project supported by the National Natural Science Foundation of China(Grant No.61864012)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2018年11期
  • 【分类号】TB34
  • 【被引频次】1
  • 【下载频次】57
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