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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Comparison of nano-structured solar cell anti-reflection coating based on graded-index or mode coupling approach
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Comparison of nano-structured solar cell anti-reflection coating based on graded-index or mode coupling approach

机译:基于梯度指数或模式耦合方法的纳米结构太阳能电池减反射膜的比较

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摘要

Solar cell nano-structured anti-reflection coatings based on graded index (GI) and mode coupling are all proposed to significantly reduce the reflection from semiconductor-air interface. In this work, it is shown that purely graded index approach can lead to degradation of long wavelength absorption by eliminating quasi-guided mode excitation. The reason is that the physically graded layer not only provides low reflectance path from air to semiconductor, but also from semiconductor to air, leading to photon escape. This results in out-coupling of photons from the semiconductor to air. On the other hand, anti-reflection coating based on mode coupling does not suffer from degraded long wavelength absorption and it is capable of acting as one-way photon pass coating. It is found that the sidewall thickness of mode coupling anti-reflection coating has significant impact on its effectiveness for antireflection, and therefore the selection of process methods is critical for its low reflectance. It is proposed that the purely graded index coating is more suitable for wafer-based photovoltaics where full absorption is possible by two photon traces. The mode coupling coating is suitable for both wafer-based photovoltaics and thin-film photovoltaics since it provides not only low reflectance but also long wavelength quasi-guided mode excitations. In the end, new types of anti-reflection coating and light trapping structure are proposed to further enhance the performance. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了基于梯度指数(GI)和模式耦合的太阳能电池纳米结构减反射涂层,以显着减少半导体-空气界面的反射。在这项工作中,它表明,通过消除准引导模式激发,纯梯度折射率方法可导致长波长吸收的降低。原因是物理渐变层不仅提供了从空气到半导体的低反射率路径,而且还提供了从半导体到空气的低反射率路径,从而导致光子逸出。这导致光子从半导体到空气的外耦合。另一方面,基于模式耦合的抗反射涂层不会遭受长波长吸收性能的下降,并且能够用作单向光子通过涂层。已经发现,模式耦合抗反射涂层的侧壁厚度对其抗反射效果具有显着影响,因此工艺方法的选择对于其低反射率至关重要。提出纯梯度折射率涂层更适用于基于晶片的光生伏打,其中通过两个光子迹线可以完全吸收。模耦合涂层既适用于基于晶片的光伏也适用于薄膜光伏,因为它不仅提供低反射率,而且还提供长波长的准引导模激发。最后,提出了新型的抗反射涂层和光陷获结构以进一步提高性能。 (C)2014 Elsevier B.V.保留所有权利。

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