中文版 | English
题名

Understanding of the Extremely Low Thermal Conductivity in High-Performance Polycrystalline SnSe through Potassium Doping

作者
通讯作者He, Jiaqing
发表日期
2016-10-04
DOI
发表期刊
ISSN
1616-301X
EISSN
1616-3028
卷号26期号:37页码:6836-6845
摘要

P-type polycrystalline SnSe and K0.01Sn0.99Se are prepared by combining mechanical alloying (MA) and spark plasma sintering (SPS). The highest ZT of approximate to 0.65 is obtained at 773 K for undoped SnSe by optimizing the MA time. To enhance the electrical transport properties of SnSe, K is selected as an effective dopant. It is found that the maximal power factor can be enhanced signifi cantly from approximate to 280 mu W m(-1) K-2 for undoped SnSe to approximate to 350 mu W m(-1) K-2 for K-doped SnSe. It is also observed that the thermal conductivity of polycrystalline SnSe can be enhanced if the SnSe powders are slightly oxidized. Surprisingly, after K doping, the absence of Sn oxides at grain boundaries and the presence of coherent nanoprecipitates in the SnSe matrix contribute to an impressively low lattice thermal conductivity of approximate to 0.20 W m(-1) K-1 at 773 K along the sample section perpendicular to pressing direction of SPS. This extremely low lattice thermal conductivity coupled with the enhanced power factor results in a record high ZT of approximate to 1.1 at 773 K along this direction in polycrystalline SnSe.

相关链接[来源记录]
收录类别
SCI ; EI
语种
英语
重要成果
NI论文
学校署名
第一 ; 通讯
资助项目
Leading Talents of Guangdong Province Program[00201517]
WOS研究方向
Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
WOS类目
Chemistry, Multidisciplinary ; Chemistry, Physical ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary ; Physics, Applied ; Physics, Condensed Matter
WOS记录号
WOS:000384810300017
出版者
EI入藏号
20163202703520
EI主题词
Crystal Lattices ; Doping (Additives) ; Electric Power Factor ; Grain Boundaries ; High Resolution Transmission Electron Microscopy ; Layered Semiconductors ; Mechanical Alloying ; Polycrystalline Materials ; Potassium ; Precipitation (Chemical) ; Spark Plasma Sintering ; Thermal Conductivity ; Thermoelectricity ; Tin Compounds ; Transmission Electron Microscopy
EI分类号
Metallurgy And Metallography:531 ; Tin And Alloys:546.2 ; Alkali Metals:549.1 ; Thermodynamics:641.1 ; Electricity: Basic Concepts And Phenomena:701.1 ; Optical Devices And Systems:741.3 ; Chemical Operations:802.3 ; Crystalline Solids:933.1 ; Crystal Lattice:933.1.1
ESI学科分类
MATERIALS SCIENCE
来源库
Web of Science
引用统计
被引频次[WOS]:196
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/29420
专题理学院_物理系
作者单位
1.South Univ Sci & Technol China, Dept Phys, Shenzhen Key Lab Thermoelect Mat, Shenzhen 518055, Peoples R China
2.Kunming Univ Sci & Technol, Fac Mat Sci & Engn, Kunming 650093, Peoples R China
3.Wuhan Univ Technol, State Key Lab Adv Technol Mat Synth & Proc, Wuhan 430070, Peoples R China
第一作者单位物理系
通讯作者单位物理系
第一作者的第一单位物理系
推荐引用方式
GB/T 7714
Chen, Yue-Xing,Ge, Zhen-Hua,Yin, Meijie,et al. Understanding of the Extremely Low Thermal Conductivity in High-Performance Polycrystalline SnSe through Potassium Doping[J]. ADVANCED FUNCTIONAL MATERIALS,2016,26(37):6836-6845.
APA
Chen, Yue-Xing.,Ge, Zhen-Hua.,Yin, Meijie.,Feng, Dan.,Huang, Xue-Qin.,...&He, Jiaqing.(2016).Understanding of the Extremely Low Thermal Conductivity in High-Performance Polycrystalline SnSe through Potassium Doping.ADVANCED FUNCTIONAL MATERIALS,26(37),6836-6845.
MLA
Chen, Yue-Xing,et al."Understanding of the Extremely Low Thermal Conductivity in High-Performance Polycrystalline SnSe through Potassium Doping".ADVANCED FUNCTIONAL MATERIALS 26.37(2016):6836-6845.
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