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Highly Conductive and Wettable PEDOT:PSS for Simple and Efficient Organic/c-Si Planar Heterojunction Solar Cells

机译:高导电性和可湿性的PEDOT:PSS,用于简单高效的有机/ c-Si平面异质结太阳能电池

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摘要

The key for fabricating efficient organic-Si planar heterojunction solar cells is the organic semiconductor layer, which governs key steps in photocarrier harvesting such as charge carrier separation and extraction. Typical organic semiconductors, however, are inadequate to yield good device performance due to their low electrical conductivities and undesirable work functions. Herein, a method is proposed to boost charge carrier concentration in poly(3,4-ethylenedioxythiophene): polystyrene sulfonate (PEDOT:PSS) from 10~(18) to 10~(22) cm~(-3) by combining solvent p-doping and DMF treatment. This high carrier concentration induces significant band bending in the Si substrate and thus leads to an extended inversion zone near an organic/Si heterojunction. It is found that this type of heterojunction creates a broad built-in electric field and effective interface passivation. The highly conductive PEDOT:PSS enables a simple and efficient organic-Si planar heterojunction solar cell with a power conversion efficiency exceeding 13% without using complex light-trapping structures. This power efficiency is comparable with the highest value reported to date. Herein, the possibility of making effective organic-Si planar heterojunction solar cells simply by applying a layer of extremely conductive organic coating is demonstrated.
机译:制造有效的有机/ n-Si平面异质结太阳能电池的关键是有机半导体层,它控制着光载流子收集中的关键步骤,例如电荷载流子的分离和提取。然而,典型的有机半导体由于其低电导率和不期望的功函而不足以产生良好的器件性能。本文提出了一种通过结合溶剂p将聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)中的载流子浓度从10〜(18)提高到10〜(22)cm〜(-3)的方法。掺杂和DMF处理。这种高的载流子浓度在Si衬底中引起明显的能带弯曲,从而导致有机/ Si异质结附近的反型区扩大。发现这种类型的异质结产生了宽广的内置电场和有效的界面钝化。高导电性的PEDOT:PSS能够在不使用复杂的光捕获结构的情况下,实现功率转换效率超过13%的简单有效的有机/ n-Si平面异质结太阳能电池。该功率效率可与迄今为止报告的最高值相媲美。在此,说明了仅通过涂布高导电性有机被膜层就可以制造有效的有机/ n-Si平面异质结太阳能电池的可能性。

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