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High-performance and flexible thermoelectric films by screen printing solution-processed nanoplate crystals

机译:丝网印刷溶液处理的纳米板晶体的高性能和柔性热电薄膜

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Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy harvesters and coolers. However, obtaining flexible thermoelectric materials with high figure of merit ZT through printing is an exacting challenge due to the difficulties to synthesize high-performance thermoelectric inks and the poor density and electrical conductivity of the printed films. Here, we demonstrate high-performance flexible films and devices by screen printing bismuth telluride based nanocrystal inks synthesized using a microwave-stimulated wet-chemical method. Thermoelectric films of several tens of microns thickness were screen printed onto a flexible polyimide substrate followed by cold compaction and sintering. The n-type films demonstrate a peak ZT of 0.43 along with superior flexibility, which is among the highest reported ZT values in flexible thermoelectric materials. A flexible thermoelectric device fabricated using the printed films produces a high power density of 4.1?mW/cm(2) with 60?°C temperature difference between the hot side and cold side. The highly scalable and low cost process to fabricate flexible thermoelectric materials and devices demonstrated here opens up many opportunities to transform thermoelectric energy harvesting and cooling applications.
机译:丝网印刷可以将热电纳米晶体直接转换为柔性能量收集器和冷却器。然而,由于难以合成高性能热电油墨并且印刷膜的密度和导电性差,因此通过印刷获得具有高品质因数ZT的柔性热电材料是一项严峻的挑战。在这里,我们演示了通过丝网印刷使用微波刺激的湿化学方法合成的碲化铋基纳米晶体油墨的高性能柔性膜和器件。将几十微米厚的热电薄膜丝网印刷在柔性聚酰亚胺基板上,然后进行冷压和烧结。 n型薄膜的ZT峰值为0.43,具有出色的柔韧性,是柔性热电材料中最高的ZT值之一。使用印刷膜制造的柔性热电器件产生的热功率密度为4.1?mW / cm(2),在热侧和冷侧之间的温度差为60°C。此处演示的高度灵活,低成本的制造柔性热电材料和设备的方法为改造热电能量收集和冷却应用打开了许多机会。

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