首页> 外文期刊>ACS applied materials & interfaces >High-Performance Dispenser Printed MA p-Type Bi_(0.5)Sb_(1.5)Te3 Flexible Thermoelectric Generators for Powering Wireless Sensor Networks
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High-Performance Dispenser Printed MA p-Type Bi_(0.5)Sb_(1.5)Te3 Flexible Thermoelectric Generators for Powering Wireless Sensor Networks

机译:高性能分配器印刷MA p型Bi_(0.5)Sb_(1.5)Te3柔性热电发电机,用于为无线传感器网络供电

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摘要

This work presents a novel method to synthesize p-type composite thermoelectric materials to print scalable thermoelectric generator (TEG) devices in a cost-effective way. A maximum ZT of 0.2 was achieved for mechanically alloyed (MA) p-type Bi_(0.5)Sb_(1.5)Te3 (8 wt % extra Te additive)-epoxy composite films cured at 250 °C. A 50% increase in Seebeck coefficient as a result of adding 8 wt % extra Te in stoichiometric Bi_(0.5)Sb_(1.5)Te3 contributed to the increase in ZT. To demonstrate cost-effective and scalable manufacturing, we fabricated a sixty element thermoelectric generator prototype with 5.0 mm X 600 μm X 120 μm printed dimensions on a custom designed polyimide substrate with thick metal contacts. The prototype TEG device produced a power output of 20.5 μW at 0.15 mA and 130 mV for a temperature difference of 20 K resulting in a device areal power density of 152 μW/cm~2. This power is sufficient for low power applications such as wireless sensor network (WSN) devices.
机译:这项工作提出了一种新颖的方法,可以以经济有效的方式合成p型复合热电材料,以印刷可缩放的热电发生器(TEG)设备。对于在250°C固化的机械合金化(MA)p型Bi_(0.5)Sb_(1.5)Te3(额外的8 wt%的Te添加剂)-环氧树脂复合膜,最大ZT为0.2。由于在化学计量的Bi_(0.5)Sb_(1.5)Te3中添加了8 wt%的额外Te,塞贝克系数增加了50%,这有助于ZT的增加。为了证明具有成本效益和可扩展的制造能力,我们在定制的带有厚金属触点的聚酰亚胺基板上制造了60元件热电发电机原型,其原型尺寸为5.0 mm X 600μmX 120μm。原型TEG器件在0.15 mA和130 mV的温度差为20 K时产生20.5μW的功率输出,从而导致器件的单位面积功率密度为152μW/ cm〜2。对于低功率应用(例如无线传感器网络(WSN)设备),此功率已足够。

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