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通过溶液处理的胶体纳米片制备的高性能柔性碲化铋薄膜。

High-Performance Flexible Bismuth Telluride Thin Film from Solution Processed Colloidal Nanoplates.

作者信息

Hollar Courtney, Lin Zhaoyang, Kongara Madhusudan, Varghese Tony, Karthik Chinnathambi, Schimpf Jesse, Eixenberger Josh, Davis Paul H, Wu Yaqiao, Duan Xiangfeng, Zhang Yanliang, Estrada David

机构信息

Department of Mechanical Engineering, University of Idaho, Boise, ID 83702, United States.

Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, United States.

出版信息

Adv Mater Technol. 2020 Nov;5(11). doi: 10.1002/admt.202000600. Epub 2020 Oct 9.

Abstract

Thermoelectric generators are an environmentally friendly and reliable solid-state energy conversion technology. Flexible and low-cost thermoelectric generators are especially suited to power flexible electronics and sensors using body heat or other ambient heat sources. Bismuth telluride based thermoelectric materials exhibit their best performance near room temperature making them an ideal candidate to power wearable electronics and sensors using body heat. In this report BiTe thin films are deposited on a flexible polyimide substrate using low-cost and scalable manufacturing methods. The synthesized BiTe nanocrystals have a thickness of 35 ± 15 nm and a lateral dimension of 692 ± 186 nm. Thin films fabricated from these nanocrystals exhibit a peak power factor of 0.35 mW/m·K at 433 K, which is among the highest reported values for flexible thermoelectric films. In order to evaluate the flexibility of the thin films, static and dynamic bending tests were performed while monitoring the change in electrical resistivity. After 1000 bending cycles over a 50mm ROC, the change in electrical resistance of the film was 23%. Using our BiTe solutions, we demonstrated the ability to print thermoelectric thin films with an aerosol jet printer, highlighting the potential of additive manufacturing techniques for fabricating flexible thermoelectric generators.

摘要

热电发电机是一种环保且可靠的固态能量转换技术。柔性且低成本的热电发电机特别适合利用人体热量或其他环境热源为柔性电子产品和传感器供电。基于碲化铋的热电材料在室温附近表现出最佳性能,使其成为利用人体热量为可穿戴电子产品和传感器供电的理想候选材料。在本报告中,采用低成本且可扩展的制造方法,将碲化铋薄膜沉积在柔性聚酰亚胺基板上。合成的碲化铋纳米晶体厚度为35±15纳米,横向尺寸为692±186纳米。由这些纳米晶体制成的薄膜在433K时表现出0.35毫瓦/米·开尔文的峰值功率因数,这是柔性热电薄膜报道的最高值之一。为了评估薄膜的柔韧性,在监测电阻率变化的同时进行了静态和动态弯曲测试。在半径为50毫米的情况下进行1000次弯曲循环后,薄膜的电阻变化为23%。使用我们的碲化铋溶液,我们展示了用气悬式喷射打印机打印热电薄膜的能力,突出了增材制造技术在制造柔性热电发电机方面的潜力。

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