Prado-Gonjal Jesús, García-Calvo Elena, Gainza Javier, Durá Oscar J, Dejoie Catherine, Nemes Norbert M, Martínez José Luis, Alonso José Antonio, Serrano-Sánchez Federico
Departamento de Química Inorgánica, Universidad Complutense de Madrid, Ciudad Universitaria s/n, Madrid E-28040, Spain.
Instituto de Ciencia de Materiales de Madrid, CSIC, Cantoblanco, Madrid E-28049, Spain.
ACS Appl Electron Mater. 2024 Mar 5;6(5):2969-2977. doi: 10.1021/acsaelm.3c01653. eCollection 2024 May 28.
Thermoelectric materials offer a promising avenue for energy management, directly converting heat into electrical energy. Among them, AgSbTe has gained significant attention and continues to be a subject of research at further improving its thermoelectric performance and expanding its practical applications. This study focuses on Ag-deficient AgSbTe and AgSbTeSe materials, examining the impact of compositional engineering within the AgSbTe thermoelectric system. These materials have been rapidly synthesized using an arc-melting technique, resulting in the production of dense nanostructured pellets. Detailed analysis through scanning electron microscopy (SEM) reveals the presence of a layered nanostructure, which significantly influences the thermoelectric properties of these materials. Synchrotron X-ray diffraction reveals significant changes in the lattice parameters and atomic displacement parameters (ADPs) that suggest a weakening of bond order in the structure. The thermoelectric characterization highlights the enhanced power factor of Ag-deficient materials that, combined with the low glass-like thermal conductivity, results in a significant improvement in the figure of merit, achieving values of 1.25 in AgSbTe and 1.01 in AgSbTeSe at 750 K.
热电材料为能量管理提供了一条很有前景的途径,可直接将热能转化为电能。其中,AgSbTe受到了广泛关注,并且仍然是进一步提高其热电性能和扩大其实际应用的研究课题。本研究聚焦于缺银的AgSbTe和AgSbTeSe材料,研究了AgSbTe热电体系中成分工程的影响。这些材料已通过电弧熔炼技术快速合成,得到了致密的纳米结构颗粒。通过扫描电子显微镜(SEM)进行的详细分析揭示了层状纳米结构的存在,这对这些材料的热电性能有显著影响。同步辐射X射线衍射揭示了晶格参数和原子位移参数(ADP)的显著变化,这表明结构中的键序减弱。热电表征突出了缺银材料增强的功率因子,再结合低玻璃态热导率,导致优值显著提高,在750 K时,AgSbTe的优值达到1.25,AgSbTeSe的优值达到1.01。