Realizing Cd and Ag codoping in p-type MgSb toward high thermoelectric performance

被引:0
|
作者
Shijuan Xiao [1 ]
Kunling Peng [1 ]
Zizhen Zhou [1 ]
Huan Wang [1 ]
Sikang Zheng [1 ]
Xu Lu [1 ]
Guang Han [2 ]
Guoyu Wang [3 ]
Xiaoyuan Zhou [1 ,2 ,4 ]
机构
[1] College of Physics, Chongqing University
[2] National Engineering Research Center for Magnesium Alloys, Chongqing University
[3] Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences
[4] Analytical and Testing Center, Chongqing
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TB34 [功能材料];
学科分类号
080501 ;
摘要
Mg3Sb2 has attracted intensive attention as a typical Zintl-type thermoelectric material. Despite the exceptional thermoelectric performance in n-type Mg3Sb2, the dimensionless figure of merit(zT) of p-type Mg3Sb2 remains lower than 1, which is mainly attributed to its inferior electrical properties. Herein, we synergistically optimize the thermoelectric properties of p-type Mg3Sb2 materials via codoping of Cd and Ag, which were synthesized by high-energy ball milling combined with hot pressing. It is found that Cd doping not only increases the carrier mobility of p-type Mg3Sb2 , but also diminishes its thermal conductivity(κtot), with Mg2.85Cd0.5Sb2 achieving a low κtotvalue of ~0.67 W m-1K-1 at room temperature. Further Ag doping elevates the carrier concentration, so that the power factor is optimized over the entire temperature range. Eventually, a peak zT of ~0.75 at 773 K and an excellent average zT of ~0.41 over 300-773 K are obtained in Mg2.82Ag0.03Cd0.5Sb2, which are ~240% and ~490% higher than those of pristine Mg3.4Sb2, respectively. This study provides an effective pathway to synergistically improve the thermoelectric performance of p-type Mg3Sb2 by codoping Cd and Ag, which is beneficial to the future applications of Mg3Sb2 -based thermoelectric materials.
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页码:2486 / 2494
页数:9
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