材料科学
热电效应
热电材料
无定形固体
声子散射
凝聚态物理
散射
热传导
化学工程
降水
热导率
化学物理
复合材料
热力学
结晶学
光学
化学
物理
工程类
气象学
作者
Rui Shu,Zhijia Han,Anna Elsukova,Yongbin Zhu,Peng Qin,Feng Jiang,Jun Lu,Per O. Å. Persson,Justinas Pališaitis,Arnaud le Febvrier,Wenqing Zhang,Oana Cojocaru‐Mirédin,Yuan Yu,Per Eklund,Weishu Liu
标识
DOI:10.1002/advs.202202594
摘要
Solid-state precipitation can be used to tailor material properties, ranging from ferromagnets and catalysts to mechanical strengthening and energy storage. Thermoelectric properties can be modified by precipitation to enhance phonon scattering while retaining charge-carrier transmission. Here, unconventional Janus-type nanoprecipitates are uncovered in Mg3 Sb1.5 Bi0.5 formed by side-by-side Bi- and Ge-rich appendages, in contrast to separate nanoprecipitate formation. These Janus nanoprecipitates result from local comelting of Bi and Ge during sintering, enabling an amorphous-like lattice thermal conductivity. A precipitate size effect on phonon scattering is observed due to the balance between alloy-disorder and nanoprecipitate scattering. The thermoelectric figure-of-merit ZT reaches 0.6 near room temperature and 1.6 at 773 K. The Janus nanoprecipitation can be introduced into other materials and may act as a general property-tailoring mechanism.
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