Low-temperature sintering of Ag nanoparticles for high-performance thermoelectric module design

被引:0
|
作者
Li Yin
Fan Yang
Xin Bao
Wenhua Xue
Zhipeng Du
Xinyu Wang
Jinxuan Cheng
Hongjun Ji
Jiehe Sui
Xingjun Liu
Yumei Wang
Feng Cao
Jun Mao
Mingyu Li
Zhifeng Ren
Qian Zhang
机构
[1] Harbin Institute of Technology,School of Materials Science and Engineering and Institute of Materials Genome and Big Data
[2] Harbin Institute of Technology,Sauvage Laboratory for Smart Materials, School of Materials Science and Engineering
[3] Harbin Institute of Technology,State Key Laboratory of Advanced Welding and Joining
[4] Chinese Academy of Sciences,Beijing National Laboratory for Condensed Matter Physics, Institute of Physics
[5] Harbin Institute of Technology,School of Science
[6] University of Houston,Department of Physics and Texas Center for Superconductivity at University of Houston (TcSUH)
来源
Nature Energy | 2023年 / 8卷
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摘要
To facilitate the development of thermoelectric modules for various operating temperature ranges, a connection technology that is suitable for heat-sensitive thermoelectric materials and capable of realizing both low-temperature connections and high-temperature service is required. Here we use low-temperature sintering of silver nanoparticles as an approach to connect the electrode and metallization layer of low- (Bi2Te3-based), medium- (PbTe-based) and high-temperature (half-Heusler-based) thermoelectric modules. Owing to the low melting point of Ag nanoparticles and the high stability in the sintered bulk, the processing temperature of the module is decoupled from the operating temperature, avoiding welding thermal stress. We demonstrate a conversion efficiency of ~11% at the temperature difference of 550 K for the PbTe-based module. Additionally, the module’s performance remains nearly unchanged throughout thermal cycling between hot-side temperatures of 593 and 793 K for 50 cycles. Our work accelerates the development of advanced modules for thermoelectric power generation.
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页码:665 / 674
页数:9
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