Gierczak Mirosław, Prażmowska-Czajka Joanna, Dziedzic Andrzej
Faculty of Microsystem Electronics and Photonics, Wrocław University of Science and Technology, Janiszewskiego 11/17, 50-372 Wrocław, Poland.
Materials (Basel). 2018 Jan 12;11(1):115. doi: 10.3390/ma11010115.
This paper describes the design, manufacturing and characterization of newly developed mixed thick-/thin film thermoelectric microgenerators based on magnetron sputtered constantan (copper-nickel alloy) and screen-printed silver layers. The thermoelectric microgenerator consists of sixteen thermocouples made on a 34.2 × 27.5 × 0.25 mm³ alumina substrate. One of thermocouple arms was made of magnetron-sputtered constantan (Cu-Ni alloy), the second was a Ag-based screen-printed film. The length of each thermocouple arm was equal to 27 mm, and their width 0.3 mm. The distance between the arms was equal to 0.3 mm. In the first step, a pattern mask with thermocouples was designed and fabricated. Then, a constantan layer was magnetron sputtered over the whole substrate, and a photolithography process was used to prepare the first thermocouple arms. The second arms were screen-printed onto the substrate using a low-temperature silver paste (Heraeus C8829A or ElectroScience Laboratories ESL 599-E). To avoid oxidation of constantan, they were fired in a belt furnace in a nitrogen atmosphere at 550/450 °C peak firing temperature. Thermoelectric and electrical measurements were performed using the self-made measuring system. Two pyrometers included into the system were used for temperature measurement of hot and cold junctions. The estimated Seebeck coefficient, was from the range 35 - 41 µV/K, whereas the total internal resistances were between 250 and 3200 ohms, depending on magnetron sputtering time and kind of silver ink (the resistance of a single thermocouple was between 15.5 and 200 ohms).
本文描述了基于磁控溅射康铜(铜镍合金)和丝网印刷银层新开发的混合厚膜/薄膜热电微型发电机的设计、制造与特性。该热电微型发电机由在34.2×27.5×0.25mm³氧化铝基板上制作的16个热电偶组成。其中一个热电偶臂由磁控溅射康铜(铜镍合金)制成,另一个是基于银的丝网印刷薄膜。每个热电偶臂的长度为27mm,宽度为0.3mm。臂之间的距离为0.3mm。第一步,设计并制作了带有热电偶的图案掩膜。然后,在整个基板上磁控溅射康铜层,并使用光刻工艺制备第一个热电偶臂。使用低温银浆(贺利氏C8829A或伊索科学实验室ESL 599 - E)将第二个臂丝网印刷到基板上。为避免康铜氧化,在带式炉中于氮气气氛下以550/450°C的峰值烧制温度进行烧制。使用自制测量系统进行热电和电学测量。系统中包含的两个高温计用于测量热端和冷端的温度。估计的塞贝克系数在35 - 41µV/K范围内,而总内阻在250至3200欧姆之间,这取决于磁控溅射时间和银墨种类(单个热电偶的电阻在15.5至200欧姆之间)。