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Printed Thermoelectric Devices Using Vanadate Glass Composite Materials

机译:使用钒酸盐玻璃复合材料的印刷热电器件

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Thermoelectric (TE) devices have emerged as one of the most promising new technologies for use as sensor module energy harvesters and as waste-heat recovery systems. Low-cost and large-area printed TE devices are suitable because heat sources are widely distributed throughout the environment. In addition, high reliability is also required of the TE materials because the devices are operated in high-temperature environments over long periods of time. In this study, we developed glass matrix TE composite materials that have a higher softening temperature than organic materials. Using low melting point vanadate glasses as the matrix materials, we fabricated n-type Bi_2Te_3-vanadate glass and p-type Bi_(0.3)Sb_(1.7)Te_3-vanadate glass composites. The figure of merit (ZT) of both materials was approximately 0.2 at temperatures between 25 ℃ and 300 ℃. We also fabricated a pair of thermocouple devices using these vanadate glass composites with simple printing process, and an output voltage of 5 mV was obtained when the thermocouple pair was placed on a hot plate heated to 90 ℃.
机译:热电(TE)器件已成为最有前途的新技术之一,可用作传感器模块的能量收集器和废热回收系统。低成本,大面积印刷的TE设备非常适合,因为热源广泛分布在整个环境中。另外,由于器件在高温环境下长时间运行,因此TE材料也需要很高的可靠性。在这项研究中,我们开发了具有比有机材料更高的软化温度的玻璃基TE复合材料。以低熔点钒酸盐玻璃为基质材料,制备了n型Bi_2Te_3-钒酸盐玻璃和p型Bi_(0.3)Sb_(1.7)Te_3-钒酸盐玻璃复合材料。两种材料在25℃至300℃的温度下的品质因数(ZT)约为0.2。我们还使用这些钒酸盐玻璃复合材料制造了一对热电偶器件,印刷工艺简单,当将热电偶对放在加热到90℃的热板上时,输出电压为5 mV。

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