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碲化铋基热电器件的制备及其优异性能

Fabrication and Excellent Performances of Bismuth Telluride-Based Thermoelectric Devices.

作者信息

Zhu Wu, Wei Ping, Zhang Jianqiang, Li Longzhou, Zhu Wanting, Nie Xiaolei, Sang Xiahan, Zhang Qingjie, Zhao Wenyu

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, China.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 16;14(10):12276-12283. doi: 10.1021/acsami.1c24627. Epub 2022 Mar 2.

Abstract

The barrier layer between thermoelectric (TE) legs and electrodes has crucial impact on the electrothermal conversion efficiency of the TE device; however, the interfacial reaction of the Ni metal barrier layer with TE legs in traditional BiTe-based devices is harmful to the device performance. Herein, a high-quality barrier layer of a Ni-based alloy has been fabricated on both n-type and p-type BiTe-based TE legs by the electroplating method. The in situ XRD results indicate that the as-prepared BiTe-based TE legs with a Ni-based alloy barrier layer remain stable even at 300 °C. The high-resolution high-angle annular dark field scanning transmission electron microscopy images reveal that the Ni-based alloy barrier layer has more excellent stability than that of the Ni metal barrier layer. The BiTe-based TE devices with excellent structural and performance stabilities were assembled with the as-grown high-performance n-type and p-type BiTe-based leg with a Ni-based alloy barrier layer, which have lower internal resistance and higher cooling and power generation performances. A maximum cooling temperature difference over 65 K and a maximum cooling capacity of 55 W were obtained for the high-performance BiTe-based TE devices. This work provides a new strategy for high-temperature applications of commercial BiTe-based TE devices.

摘要

热电(TE)腿与电极之间的阻挡层对TE器件的电热转换效率有着至关重要的影响;然而,传统BiTe基器件中Ni金属阻挡层与TE腿的界面反应对器件性能有害。在此,通过电镀法在n型和p型BiTe基TE腿上制备了高质量的Ni基合金阻挡层。原位XRD结果表明,所制备的带有Ni基合金阻挡层的BiTe基TE腿即使在300°C时仍保持稳定。高分辨率高角度环形暗场扫描透射电子显微镜图像显示,Ni基合金阻挡层比Ni金属阻挡层具有更优异的稳定性。采用生长的具有Ni基合金阻挡层的高性能n型和p型BiTe基腿组装了具有优异结构和性能稳定性的BiTe基TE器件,这些器件具有更低的内阻以及更高的冷却和发电性能。高性能BiTe基TE器件获得了超过65 K的最大冷却温差和55 W的最大冷却能力。这项工作为商用BiTe基TE器件的高温应用提供了一种新策略。

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