Litcius/Paper detail

Wide-temperature-range thermoelectric n-type Mg3(Sb,Bi)2 with high average and peak zT values

Jingwei Li, Zhijia Han, Jincheng Yu, Hua‐Lu Zhuang, Haihua Hu, Bin Su, Hezhang Li, Yilin Jiang, Lu Chen, Weishu Liu, Qiang Zheng, Jing‐Feng Li

2023Nature Communications137 citationsDOIOpen Access PDF

Abstract

Abstract Mg 3 (Sb,Bi) 2 is a promising thermoelectric material suited for electronic cooling, but there is still room to optimize its low-temperature performance. This work realizes >200% enhancement in room-temperature zT by incorporating metallic inclusions (Nb or Ta) into the Mg 3 (Sb,Bi) 2 -based matrix. The electrical conductivity is boosted in the range of 300–450 K, whereas the corresponding Seebeck coefficients remain unchanged, leading to an exceptionally high room-temperature power factor >30 μW cm −1 K −2 ; such an unusual effect originates mainly from the modified interfacial barriers. The reduced interfacial barriers are conducive to carrier transport at low and high temperatures. Furthermore, benefiting from the reduced lattice thermal conductivity, a record-high average zT > 1.5 and a maximum zT of 2.04 at 798 K are achieved, resulting in a high thermoelectric conversion efficiency of 15%. This work demonstrates an efficient nanocomposite strategy to enhance the wide-temperature-range thermoelectric performance of n-type Mg 3 (Sb,Bi) 2 , broadening their potential for practical applications.

Topics & Concepts

Materials scienceThermoelectric effectThermoelectric materialsAtmospheric temperature rangeThermal conductivitySeebeck coefficientCondensed matter physicsWork (physics)Electrical resistivity and conductivityEngineering physicsOptoelectronicsThermodynamicsElectrical engineeringComposite materialPhysicsEngineeringAdvanced Thermoelectric Materials and DevicesThermal Expansion and Ionic ConductivityHeusler alloys: electronic and magnetic properties