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Efficient planar Sb2S3 solar cells using a low-temperature solution-processed tin oxide electron conductor

机译:使用低温溶液处理的氧化锡电子导体的高效平面Sb2S3太阳能电池

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摘要

Efficient planar antimony sulfide (Sb2S3) heterojunction solar cells have been made using chemical bath deposited (CBD) Sb2S3 as the absorber, low-temperature solution-processed tin oxide (SnO2) as the electron conductor and poly (3-hexylthiophene) (P3HT) as the hole conductor. A solar conversion efficiency of 2.8% was obtained at 1 sun illumination using a planar device consisting of F-doped SnO2 substrate/SnO2/CBD-Sb2S3/P3HT/Au, whereas the solar cells based on a titanium dioxide (TiO2) electron conductor exhibited a power conversion efficiency of 1.9%. Compared with conventional Sb2S3 sensitized solar cells, the high-temperature processed mesoscopic TiO2 scaffold is no longer needed. More importantly, a low-temperature solution-processed SnO2 layer was introduced for electron transportation to substitute the high-temperature sintered dense blocking TiO2 layer. Our planar solar cells not only have simple geometry with fewer steps to fabricate but also show enhanced performance. The higher efficiency of planar Sb2S3 solar cell devices based on a SnO2 electron conductor is attributed to their high transparency, uniform surface, efficient electron transport properties of SnO2, suitable energy band alignment, and reduced recombination at the interface of SnO2/Sb2S3.
机译:使用化学浴沉积(CBD)Sb2S3作为吸收剂,低温溶液处理的氧化锡(SnO2)作为电子导体和聚(3-己基噻吩)(P3HT)制备了高效的平面锑化锑(Sb2S3)异质结太阳能电池作为孔导体。使用由F掺杂的SnO2衬底/ SnO2 / CBD-Sb2S3 / P3HT / Au组成的平面器件,在1个阳光照射下,太阳能转换效率为2.8%,而基于二氧化钛(TiO2)电子导体的太阳能电池表现出功率转换效率为1.9%。与常规的Sb2S3敏化太阳能电池相比,不再需要高温处理的介观TiO2支架。更重要的是,引入了一种低温固溶处理的SnO2层用于电子传输,以替代高温烧结的致密阻挡TiO2层。我们的平面太阳能电池不仅具有简单的几何结构和更少的制造步骤,而且还具有增强的性能。基于SnO2电子导体的平面Sb2S3太阳能电池器件的较高效率归因于其高透明度,均匀的表面,SnO2的有效电子传输特性,合适的能带排列以及减少的SnO2 / Sb2S3界面复合。

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