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Novel Architecture of Indoor Bifacial Dye-Sensitized Solar Cells with Efficiencies Surpassing 25% and Efficiency Ratios Exceeding 95%

机译:室内双因素染料敏化太阳能电池的新型效率超过25%,效率比超过95%

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摘要

To prepare bifacial dye-sensitized solar cells (DSSCs), the classical photoelectrode employing the main light-absorbing layer (ML) and scattering layer (SL) will encounter the scattering effect of SL to the rear-side incident light and, thereby, decrease the rear-side efficiencies. To solve this problem, the SL has always been removed for the fabrication of bifacial cells. However, the front-side efficiency decreases without the SL. Here, a novel structure of a TiO2 photoelectrode is developed for bifacial DSSCs to solve the contrary effect for cells with and without an SL, increasing both the front-side and rear-side efficiencies. This new structure is constructed by introducing an additional ML behind the SL of the traditional DSSC structure (ML/SL), creating a sandwich (ML/SL/ML) architecture of the TiO2 film. The results demonstrate that rear illuminated light can be harvested more efficiently by this photoelectrode because the light is absorbed first by the last ML before suffering the effect of the SL. By using D35 and XY1b as cosensitizers of the photoelectrode, the front-side and rear-side efficiencies of the bifacial cells can achieve 25.04% and 23.7%, respectively, under 1000 lux fluorescent lighting, which means a rear-to-front efficiency ratio of 95%. The cells also show high efficiencies under one-sun conditions.
机译:为了制备双涂层染料敏化太阳能电池(DSSCs),使用主光吸收层(ML)和散射层(SL)的经典光电极将遇到SL对后侧入射光的散射效果,从而降低后侧效率。为了解决这个问题,始终被移除SL以制造双面细胞。然而,在没有SL的情况下,前侧效率降低。这里,开发了一种新颖的TiO2光电极的结构,用于双脉冲DSSCs,以解决具有和没有SL的细胞的相反效果,增加前侧和后侧效率。通过在传统DSSC结构(ML / SL)的SL后面引入额外的ML来构造这种新结构,从而产生TiO 2薄膜的夹层(ml / sl / ml)结构。结果表明,该光电极可以更有效地收获后照明光,因为在遭受SL的效果之前,光首先被最后的mL吸收。通过使用D35和XY1B作为光电电极的辅助剂,双翼细胞的前侧和后侧效率分别可以达到25.04%和23.7%,在1000勒克斯荧光灯下,这意味着右前效率95%。细胞在一晒的条件下也显示出高效率。

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