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首页> 外文期刊>Photovoltaics, IEEE Journal of >Photonic Intermediate Structures for Perovskite/c-Silicon Four Terminal Tandem Solar Cells
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Photonic Intermediate Structures for Perovskite/c-Silicon Four Terminal Tandem Solar Cells

机译:钙钛矿/ c-硅四末端串联太阳能电池的光子中间结构

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摘要

Tandem perovskite/silicon devices are promising candidates for highly efficient and low-cost solar cells. Such tandem solar cells, however, require careful photon management for optimum performance, which can be achieved with intermediate photonic structures. Here, we identify the ideal requirements for such intermediate structures in perovskite/silicon tandem cells. Counter-intuitively, we find that the reflectance in the perovskite absorption window, i.e., below approx. 800 nm wavelength, does not have a strong impact on the tandem performance. Instead, the main function of the intermediate structure is to act as an optical impedance matching layer at the perovskite–silicon interface. This insight affords the design of simple and tolerant photonic structures that can obtain efficiencies surpassing 30%, assuming a passivated emitter, rear locally diffused (PERL) bottom cell and realistic perovskite top cell, by optical impedance matching alone.
机译:串联钙钛矿/硅器件是高效,低成本太阳能电池的有前途的候选者。然而,这种串联太阳能电池需要仔细的光子管理以获得最佳性能,这可以通过中间光子结构来实现。在这里,我们确定了钙钛矿/硅串联电池中此类中间结构的理想要求。与直觉相反,我们发现钙钛矿吸收窗中的反射率,即低于约3。 800 nm波长,对串联性能没有很大影响。取而代之的是,中间结构的主要功能是在钙钛矿-硅界面处充当光阻抗匹配层。这种见解提供了简单而宽容的光子结构设计,仅通过光阻抗匹配就可以假设钝化的发射器,后方局部扩散(PERL)底部电池和真实的钙钛矿顶部电池,获得超过30%的效率。

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