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Screen printable flexible BiTe-SbTe based composite thermoelectric materials on textiles for wearable applications

机译:可纺织柔性BiTe-sbTe基复合材料热电材料,适用于可穿戴应用

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摘要

This paper presents the optimization of a bismuth tellurium (Bi1.8Te3.2)-antimony tellurium (Sb2Te3)-based thermoelectric generator (TEG) fabricated by screen-printing technology on flexible polyimide (Kapton) and textile substrates. New formulations of screen printable thermoelectric pastes are presented with optimized composition, curing conditions, and printing parameters. The modifications of the thermoelectric materials enable them to be successfully deposited on flexible textile substrates. The optimized values of resistivity of the BiTe and SbTe thick films on Kapton were 9.97 × 10-3 and 3.57 × 10-3 ? · cm, respectively. The measured figure of merit at room temperature was 0.135 and 0.095 for BiTe and SbTe thick films on Kapton, respectively. The dimension of each printed thermoleg was 20 mm×2 mm×70.5 ?m. For the TEG on Kapton, the printed assembly comprising eight thermocouples was coiled up and generated a voltage of 26.6 mV and a maximum power output of 455.4 nW at a temperature difference of 20 °C. For a printed TEG on textile, the maximum power output reached 2 ?W from the same temperature difference.
机译:本文介绍了通过丝网印刷技术在柔性聚酰亚胺(Kapton)和纺织品基材上制备的铋碲(Bi1.8Te3.2)-锑碲(Sb2Te3)基热电发生器(TEG)的优化。提出了具有可优化组成,固化条件和印刷参数的可丝网印刷热电浆料的新配方。热电材料的改性使它们能够成功地沉积在柔性纺织品基材上。 Kapton上BiTe和SbTe厚膜的电阻率的最优化值为9.97×10-3和3.57×10-3? ·厘米。在Kapton上,BiTe和SbTe厚膜在室温下测得的品质因数分别为0.135和0.095。每个印刷的热腿的尺寸为20mm×2mm×70.5μm。对于Kapton上的TEG,将包括八个热电偶的印刷组件卷起来,在20°C的温差下产生26.6 mV的电压和455.4 nW的最大功率输出。对于在纺织品上印刷的TEG,在相同的温度差下,最大功率输出达到2?W。

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