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Micro characterization of laser structured solar cells with plated Ni-Ag contacts

机译:镀镍-银触点的激光结构太阳能电池的微观表征

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摘要

An evolutionary approach to increase the cell efficiency of the industrially widely used Al-BSF Si solar cell design is the implementation of a lightly doped emitter and plated Ni-Ag front side contacts. This work shows that this approach can give a significant advantage to fully screen printed solar cells with cell efficiencies up to 19%. However, the adhesion of the plated contacts strongly depends on the tempering induced silicidation of the Ni layer. The application of macroscopic and microscopic characterization techniques indicates that the tempering induces local non-ohmic shunts due to a silicide spiking in the space charge region. The application of an additional selective emitter doping in this experiment could decrease the shunting probability but could not prevent it completely due to inhomogeneous doping depths on the textured surface.
机译:一种用于提高工业上广泛使用的Al-BSF Si太阳能电池设计的电池效率的演进方法是实施轻掺杂发射极和镀Ni-Ag正面触点。这项工作表明,这种方法可以为完全丝网印刷的太阳能电池(具有高达19%的电池效率)提供显着的优势。但是,镀层触点的附着力在很大程度上取决于回火引起的镍层的硅化。宏观和微观表征技术的应用表明,回火会由于空间电荷区域中的硅化物尖峰而引起局部非欧姆分流。在该实验中应用额外的选择性发射极掺杂可以降低分流概率,但由于纹理表面上的掺杂深度不均匀而不能完全防止分流。

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