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Operating principles of three-terminal solar cells

机译:三端太阳能电池的工作原理

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摘要

Most tandem solar cells are either two-terminal devices where the subcells are electrically connected in series or four terminal devices where each subcell is operated independently. There are trade-offs between the two integration schemes in terms of ease of fabrication, overall efficiency, and spectral sensitivity. Three-terminal (3T) tandem cells can combine the best aspects of both integration schemes if designed properly. Using a 3T design based on an interdigitated back contact (IBC) Si device with conductive front surface, combined with a wider bandgap III-V top cell, we discuss the operation of three terminal tandems in detail. We present technology computer aided design (TCAD) device physics simulations to describe trends in performance. We show that this type of 3T device can provide a robust operating mechanism to efficiently capture the solar spectrum without the need to current match sub-cells or fabricate complicated metal interconnects between cells.
机译:大多数串联太阳能电池要么是子电池串联电连接的两个终端设备,要么是每个子电池独立运行的四个终端设备。在易于制造,整体效率和光谱灵敏度方面,两种集成方案之间需要权衡取舍。如果设计合理的话,三端(3T)串联电池可以结合两种集成方案的最佳方面。使用基于带导电前表面的叉指背接触(IBC)Si器件的3T设计,结合更宽的带隙III-V顶部电池,我们详细讨论了三个端接组件的操作。我们介绍技术计算机辅助设计(TCAD)设备物理仿真,以描述性能趋势。我们表明,这种类型的3T设备可以提供强大的操作机制,以有效地捕获太阳光谱,而无需电流匹配子电池或在电池之间制造复杂的金属互连。

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