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Fabrication and excellent performances of Bi0.5Sb1.5Te3/epoxy flexible thermoelectric cooling devices

机译:Bi0.5sb1.5te3 /环氧柔性热电冷却装置的制造和优异的性能

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How to fabricate flexible thermoelectric (TE) films with excellent electrical transport properties remains a major bottleneck for high-performance flexible TE cooling devices. Herein, a simple and efficient method is developed to fabricate high-performance flexible TE cooling device by selecting Bi0.5Sb1.5Te3 as TE component and epoxy resin as adhesive. It is discovered that the (000l) preferential orientation of Bi0.5Sb1.5Te3 grains could be successfully realized in Bi0.5Sb1.5Te3/epoxy thick films by hot-pressing curing process, thus causing the remarkable enhancement in the electrical transport properties. The highest power factor of the (000l)-oriented Bi0.5Sb1.5Te3/epoxy thick films reached 0.84 mW m(-1) K-2 at 300 K, increased by 250% and 223% as compared with that of our non-pressure thick film and the highest value by other groups, respectively. A prototype flexible TE cooling device had been fabricated with the Bi0.5Sb1.5Te3/epoxy thick films. The stable temperature difference of the prototype device reached 6.2 K under a working current of 0.06 A, increased by about 24% as compared with the highest temperature difference of 5 K reported by other groups. Our work demonstrates that the hot-pressing curing process provides an effective approach to fabricate high-performance flexible TE cooling devices with Bi0.5Sb1.5Te3/epoxy thick films through the (000l) preferential orientation.
机译:如何制造具有优异电气运输性能的柔性热电(TE)薄膜仍然是高性能柔性TE冷却装置的主要瓶颈。这里,开发了一种简单而有效的方法,以通过选择Bi0.5SB1.5TE3作为Te组分和环氧树脂作为粘合剂来制造高性能柔性TE冷却装置。发现BI0.5SB1.5TE3晶粒的(000L)优先取向通过热压固化过程可以在BI0.5SB1.5TE3 /环氧厚膜中成功实现。从而在电气传输性质中引起显着的增强。 (000L)的BI0.5SB1.5TE3 /环氧厚膜的最高功率因数达到0.84mWm(-1)k-2,300k,与我们的非 - 相比增加了250%和223%压力厚膜和其他组的最高值。用Bi0.5SB1.5te3 /环氧厚膜制造了原型柔性TE冷却装置。在0.06a的工作电流下,原型装置的稳定温度差达到6.2k,而其他组的5 k的最高温度差异增加约24%。我们的作品表明,热压固化过程提供了一种有效的方法,可以通过(000L)优先取向,制造具有Bi0.5SB1.5TE3 /环氧厚膜的高性能柔性TE冷却装置。

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