Fundamental studies on the front contact formation resulting in a 21% efficiency silicon solar cell with printed rear and front contacts

M. Hörteis, J. Benick, J. Nekarda, A. Richter, R. Preu, S. Glunz
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引用次数: 15

Abstract

The contact formation on high efficiency solar cells using a high temperature process is the subject of this research. The chemical reactions between ink components and solar cell during the contact firing process are studied in detail by thermal gravimetric - differential thermo analysis. The mechanism behind the etching process and the opening of the dielectric layer are explained and the impact of the glass frit is investigated. Based on these studies, a seed layer ink was developed, optimized and tested on silicon solar cells. The developed ink was applied on high efficiency solar cells with printed front and rear contacts. At the rear side, we used a firing stable passivation layer consisting of Al2O3 and SiNx, which additionally resists the reactive compounds of the screen printed Al-paste. After applying laser fired contacts at the rear and light induced silver plating at the front, cell efficiencies of η = 21% and fill factors of 81% could be measured.
前触点形成的基础研究导致了具有印刷前后触点的21%效率硅太阳能电池
利用高温工艺研究高效太阳能电池的接触形成问题。采用热重差热分析法详细研究了油墨组分与太阳能电池在接触烧制过程中的化学反应。解释了刻蚀过程和介电层打开的机理,并研究了玻璃熔块的影响。在此基础上,开发了一种种子层油墨,对其进行了优化,并在硅太阳能电池上进行了测试。所开发的墨水被应用于具有印刷前后触点的高效太阳能电池上。在背面,我们使用了由Al2O3和SiNx组成的烧成稳定钝化层,该钝化层还可以抵抗丝网印刷Al-paste的活性化合物。在电池后部采用激光触点,在电池前部采用光诱导镀银后,电池效率η = 21%,填充系数为81%。
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