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Flexible thermoelectric power generators based on electrochemical deposition process of BI2TE3 and SB2TE3

机译:基于BI2TE3和SB2TE3电化学沉积工艺的柔性热电发电机

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The harvest of thermal energy using thermoelectric (TE) effect is one of the potential methods for wearable devices. This paper demonstrates a new approach of electrochemical deposition to fabricate flexible thermoelectric generators (FTEGs). Two proposed structures have been developed to compare the performance of the devices. One is the π-type flexible devices with thick thermoelectric cells in micro scale and the other is a new lateral Y-type structure for FTEGs. For the first time, the electrochemical deposition of thermoelectric materials Bi2Te3 and Sb2Te3 is used to integrate thermoelectric materials inside the flexible structures. The Seebeck coefficients of Bi2Te3 and Sb2Te3 are -150±20 and 170±20 μν/K, respectively. Additionally, the electrical resistivity of Bi2Te3 shows 15±5 μΩm while that of Sb2Te3 is 25±5 μΩm. The thicknesses of each thermocouple (TCs) are approximately 100 μm and 200 μm for Y-type and π-type, respectively. With the temperature difference approximately 22°C between human body (around 37°C) and environment ambience (15°C), the lateral Y-type and vertical π-type devices generate maximum powers approximately 3 and 4 μW/cm2, respectively.
机译:利用热电(TE)效应收集热能是可穿戴设备的潜在方法之一。本文演示了一种新的电化学沉积方法来制造柔性热电发生器(FTEG)。已经开发了两个提议的结构来比较设备的性能。一种是具有微尺度厚热电电池的π型柔性器件,另一种是用于FTEG的新型横向Y型结构。热电材料Bi2Te3和Sb2Te3的电化学沉积首次用于将热电材料集成到柔性结构中。 Bi2Te3和Sb2Te3的塞贝克系数分别为-150±20和170±20μv/ K。另外,Bi 2 Te 3的电阻率为15±5μΩm,而Sb 2 Te 3的电阻率为25±5μΩm。对于Y型和π型,每个热电偶(TCs)的厚度分别约为100μm和200μm。人体(大约37°C)与环境温度(15°C)之间的温度差约为22°C,因此横向Y型和垂直π型器件分别产生大约3和4μW/ cm2的最大功率。

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