材料科学
无定形固体
扩散阻挡层
复合材料
金属间化合物
烧结
热稳定性
热压
非晶态金属
热电效应
电极
热电材料
扩散
紧迫的
热膨胀
无定形碳
扩散焊
同质性(统计学)
钨
过渡金属
冶金
电阻率和电导率
大气温度范围
化学稳定性
抗剪强度(土壤)
阻挡层
金属
化学工程
接触电阻
热扩散率
纳米颗粒
氧化物
电接点
作者
Junjie Wang,Zhan Sun,Yansong Dong,Jingdong Bu,Hui Pan,Bo Zhang,Qing Chang,Lixia Zhang
标识
DOI:10.1021/acsami.6c05272
摘要
GeTe-based thermoelectric (TE) materials are promising for midtemperature applications, but their high reactivity with common metal electrodes necessitates effective diffusion barriers. This study investigates amorphous Al–Ni–Ti alloys, specifically Al 60 Ni 10 Ti 30, as diffusion barriers between GeTe-based TE materials (Ge 0.89 Sb 0.1 In 0.01 Te) and Cu electrodes. Through element screening based on thermodynamic compatibility and coefficient of thermal expansion (CTE) matching, Al and Ti were identified for their suitable reactivity with GeTe, with Ni added to enhance interfacial bonding. Interfacial characterization of GeTe/barrier/Cu joints revealed well-bonded interfaces. High-temperature aging tests at 773 K for 216 h demonstrated the superior stability of the amorphous barrier, exhibiting a reaction layer thickness approximately 60% less than its crystalline counterpart and maintaining lower interfacial contact resistivity. Joints fabricated using a one-step hot pressing method for the GeTe/barrier/Cu composite, followed by sintering to Cu electrodes with nano silver paste, achieved a shear strength of 13 MPa, comparable to the bulk GeTe material, with fractures occurring within the GeTe matrix and at the intermetallic compound/GeTe interface. These findings highlight amorphous Al 60 Ni 10 Ti 30 as a reliable and more stable diffusion barrier, offering a promising solution for enhancing the long-term operational stability of midtemperature GeTe-based TE modules.
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