Miao Liya, Zhang Qiang, Yuan Minhui, Li Ruyuan, Wang Min, Tan Xiaojian, Wu Jiehua, Liu Guo-Qiang, Jiang Jun
Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Adv Mater. 2025 Jul;37(26):e2503580. doi: 10.1002/adma.202503580. Epub 2025 Apr 29.
The long-term stability of thermoelectric generators, including those based on BiTe, is hindered by the lack of ideal thermoelectric barrier materials (TEbMs). Conventional selection methods for TEbMs mainly rely on trial-and-error, which is time-consuming and does not reveal the underlying mechanisms. In this study, a new design principle for selecting TEbMs based on thermo-electric-mechanical coupling is proposed. By combining the phase diagram predictions with the thermal expansion coefficients and electrical resistivities of the potential reactants, the NiSbTe and NiTe compounds are identified as ideal TEbMs for (Bi,Sb)Te and Bi(Te,Se), respectively, leading to interfaces with high thermal stability, low contact resistivity, and high strength. The fabricated thermoelectric generator achieves a competitive conversion efficiency of 7.1% and a power density of 0.49 W cm at hot-side and cold-side temperatures of 523 and 296 K, respectively. Moreover, performance degradation is negligible after 200 h of cycling. This work demonstrates progress toward stable high-performance service, provides the foundation for applications in low-grade heat recovery, and offers new insights for more thermoelectric generators.
包括基于BiTe的热电发电机在内,其长期稳定性受到缺乏理想热电势垒材料(TEbMs)的阻碍。传统的TEbMs选择方法主要依靠反复试验,这既耗时又无法揭示潜在机制。在本研究中,提出了一种基于热电 - 机械耦合选择TEbMs的新设计原则。通过将相图预测与潜在反应物的热膨胀系数和电阻率相结合,确定NiSbTe和NiTe化合物分别是(Bi,Sb)Te和Bi(Te,Se)的理想TEbMs,从而形成具有高热稳定性、低接触电阻率和高强度的界面。所制备的热电发电机在热侧和冷侧温度分别为523 K和296 K时,实现了7.1%的竞争转换效率和0.49 W/cm的功率密度。此外,在200小时的循环后,性能退化可忽略不计。这项工作展示了向稳定高性能服务迈进的进展,为低品位热回收应用提供了基础,并为更多热电发电机提供了新见解。