Guo Kai, Zhang Yuting, Yuan Song, Tang Qinghang, Lin Chen, Luo Pengfei, Yang Jiong, Pan Shusheng, Zhao Li-Dong, Cheng Guofeng, Zhang Jiye, Luo Jun
School of Physics and Materials Science, Guangzhou University, Guangzhou, 510006, China.
Research Center for Advanced Information Materials (CAIM), Huangpu Research & Graduate School of Guangzhou University, Sino-Singapore Guangzhou Knowledge City Huangpu District, Guangzhou, 510555, China.
Angew Chem Int Ed Engl. 2023 Jan 16;62(3):e202212515. doi: 10.1002/anie.202212515. Epub 2022 Nov 10.
Many Zintl phases are promising thermoelectric materials owning to their features like narrow band gaps, multiband behaviors, ideal charge transport tunnels, and loosely bound cations. Herein we show a new Zintl phase NaCdSb with exceptional intrinsic thermoelectric performance. Pristine NaCdSb exhibits semiconductor behaviors with an experimental hole concentration of 2.9×10 cm and a calculated band gap of 0.5 eV. As the temperature increases, the hole concentration rises gradually and approaches its optimal one, leading to a high power factor of 11.56 μW cm K at 673 K. The ultralow thermal conductivity is derived from the small phonon group velocity and short phonon lifetime, ascribed to the structural anharmonicity of Cd-Sb bonds. As a consequence, a maximum zT of 1.3 at 673 K has been achieved without any doping optimization or structural modification, demonstrating that NaCdSb is a remarkable thermoelectric compound with great potential for performance improvement.
许多津特耳相由于其具有窄带隙、多带行为、理想的电荷传输隧道和松散结合的阳离子等特性,是很有前景的热电材料。在此,我们展示了一种具有优异本征热电性能的新型津特耳相NaCdSb。纯净的NaCdSb表现出半导体行为,实验测得的空穴浓度为2.9×10¹⁹ cm⁻³,计算得到的带隙为0.5 eV。随着温度升高,空穴浓度逐渐上升并接近其最佳值,在673 K时导致高达11.56 μW cm⁻¹ K⁻²的功率因子。超低的热导率源自于小的声子群速度和短的声子寿命,这归因于Cd - Sb键的结构非谐性。因此,在没有任何掺杂优化或结构改性的情况下,在673 K时实现了高达1.3的最大zT值,表明NaCdSb是一种具有显著性能提升潜力的卓越热电化合物。