Proceedings of the 2 nd Workshop on Metallization for Crystalline Silicon Solar Cells – Status , trends and new directions – April 14 th & 15 th , 2010 Constance , Germany
نویسندگان
چکیده
The contact formation on high efficiency solar cells using a high temperature process is the subject of this research. Thermal gravimetric analyses were used to study the chemical reactions between ink components and solar cell during the firing process. The mechanism behind the etching process and the opening of the dielectric layer are explained and the influence of the glass concentration on the contact quality is given. 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 and fired front contacts and compared with photolithographically defined and evaporated front contacts. At the rear side, we used a firing stable passivation layer consisting of Al2O3 and SiOx. After evaporation of aluminum and applying laser fired contacts at the rear and light induced silver plating at the front, cell efficiencies of η = 21.5% and fill factors of 81% could be measured.
منابع مشابه
Calcium contacts to n-type crystalline silicon solar cells
Direct metallization of lightly doped n-type crystalline silicon (c-Si) is known to routinely produce non-Ohmic (rectifying) contact behaviour. This has inhibited the development of n-type c-Si solar cells with partial rear contacts, an increasingly popular cell design for high performance p-type c-Si solar cells. In this contribution we demonstrate that low resistance Ohmic contact to n-type c...
متن کامل15 th Workshop on Crystalline Silicon Solar Cells and Modules : Materials and Processes
Chemical and crystallographic defects are a reality of solar grade silicon wafers and industrial production processes. Long overlooked, phosphorus as a dopant in silicon wafers is an excellent way to mitigate recombination associated with these defects. This paper details the connection between defect recombination and solar cell terminal characteristics, for one specific case of high hole life...
متن کاملDesign of Silicon Nano-Bars Anti-Reflection Coating to Enhance Thin Film Solar Cells Efficiency
In this paper a novel anti-reflection (AR) coating based on silicon nano-bars is designed and its impact on the performance of crystalline silicon (c-Si) thin-film solar cells is extensively studied. Silicon nano-bars with optimized size and period are embedded on top of the active layer, under a 100nm Si3N4 layer. As a result of the proposed layer stack, an inhomogeneous intermediate layer wit...
متن کاملInkjet Printing of Isolation Layers for Back-Contacted Silicon-Heterojunction Solar Cells
For wafer based silicon solar cells, the combination of amorphous/crystalline silicon (a-Si:H/c-Si) heterojunction emitters (SHJ) [1] and back-contacted back-junction solar cell concepts (BCBJ) [2] offer a very high efficiency potential of around 24%. Stangl et al. proposed a relatively simple and therefore attractive cell concept comprising a two level metallization isolated by an insulation l...
متن کامل6 th International Workshop on Worst - Case Execution Time
On the 4th of July, 2006, the 6th International Workshop on Worst-Case Execution Time Analysis (WCET'06) was held in Dresden, Germany, co-located with the 18th Euromicro International Conference on Real-Time Systems (ECRTS'06), both with support of Euromicro Technical Committee. The goal of the workshop was to bring together people from academia, tool vendors and users in industry that are inte...
متن کامل