Review on Metallization in Crystalline Silicon Solar Cells

N. Balaji, Mehul C. Raval, S Saravanan
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引用次数: 14

Abstract

Solar cell market is led by silicon photovoltaics and holds around 92% of the total market. Silicon solar cell fabrication process involves several critical steps which affects cell efficiency to large extent. This includes surface texturization, diffusion, antireflective coatings, and contact metallization. Among the critical processes, metallization is more significant. By optimizing contact metallization, electrical and optical losses of the solar cells can be reduced or controlled. Conventional and advanced silicon solar cell processes are discussed briefly. Subsequently, different metallization technologies used for front contacts in conventional silicon solar cells such as screen printing and nickel/copper plating are reviewed in detail. Rear metallization is important to improve efficiency in passivated emitter rear contact cells and interdigitated back contact cells. Current models on local Al contact formation in passivated emitter rear contact (PERC) cells are reviewed, and the influence of process parameters on the formation of local Al contacts is discussed. Also, the contact mechanism and the influence of metal contacts in interdigitated back contact (IBC) cells are reviewed briefly. The research highlights on metallization of conventional screen printed solar cells are compared with PERC and IBC cells.
晶体硅太阳能电池金属化研究进展
太阳能电池市场以硅光伏电池为主导,占总市场的92%左右。硅太阳能电池的制造过程包括几个关键步骤,这些步骤在很大程度上影响电池的效率。这包括表面织构化、扩散、抗反射涂层和接触金属化。在这些关键工艺中,金属化是最重要的。通过优化接触金属化,可以减少或控制太阳能电池的电和光损耗。简要讨论了传统的和先进的硅太阳能电池工艺。随后,详细介绍了传统硅太阳能电池前触点金属化技术,如丝网印刷和镀镍/镀铜。后金属化是提高钝化发射极后接触电池和交叉指状后接触电池效率的重要手段。综述了钝化发射极后触点(PERC)电池局部铝触点形成的现有模型,讨论了工艺参数对局部铝触点形成的影响。同时,对指间背触点(IBC)电池的接触机理和金属触点的影响进行了综述。比较了传统丝网印刷太阳能电池与PERC和IBC电池在金属化方面的研究重点。
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