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基于塔姆表面等离子体激元的有机太阳能电池中活性层的光敏性和反射率。

Photosensitivity and reflectivity of the active layer in a Tamm-plasmon-polariton-based organic solar cell.

作者信息

Bikbaev Rashid G, Vetrov Stepan Ya, Timofeev Ivan V, Shabanov Vasily F

出版信息

Appl Opt. 2021 Apr 20;60(12):3338-3343. doi: 10.1364/AO.421374.

Abstract

We report on a model of an organic solar cell in which a photosensitive layer doped with plasmon nanoparticles acts as not only an absorbing element but also a mirror involved in the formation of the Tamm plasmon polariton. It is shown that such solar cells can be fabricated without metal contacts, thus avoiding undesired losses in the system. Methods for an additional increase in the integral absorption by applying metal or dielectric mirrors to the lower boundary of the photonic crystal are proposed. It has been found that the integral absorption in the active layer can be increased by 15% compared to classical optimized planar solar cells.

摘要

我们报道了一种有机太阳能电池模型,其中掺杂有等离子体纳米颗粒的光敏层不仅作为吸收元件,而且作为参与塔姆等离子体极化激元形成的镜子。结果表明,这种太阳能电池可以在没有金属接触的情况下制造,从而避免了系统中不必要的损耗。提出了通过在光子晶体的下边界应用金属或介质镜来进一步提高积分吸收率的方法。已经发现,与经典优化的平面太阳能电池相比,有源层中的积分吸收率可以提高15%。

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