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Cyanine Dye as Dopant Free Hole Transport Material in Perovskite Solar Cells

机译:Cyanine染料作为普罗夫斯基钛矿太阳能电池掺杂剂自由空穴运输材料

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Molecularly engineered, low cost cyanine dye was synthesized and used as hole transport layer (HTL) for Perovskite solar cells. The photo-physical properties were studied using solutions and films of pristine as well as hybrid/film structure of cyanine with PbI2. UV-Vis spectroscopy of the cyanine-PbI2 hybrid material reveals a strong coupling between the chromophores in the solid state. Perovskite solar cells were fabricated using either spiro-OMeTAD or cyanine as dopant free HTL. In case of Spiro-OMeTAD as dopant free HTL, PCE of 9.91% was achieved with Voc of 1.02 V, Jsc of 22.3 mA/cm2, and FF of 0.43. On the other hand using cyanine as HTL affords a large enhancement of PCE (15.4 %) as well as other cell parameters including Voc (1.12 V), Jsc (21.2 mA/cm2), and in particular FF (0.65), due to reduction of charge recombination in addition to the improved charge collection and transporting using Cyanine HTL.
机译:合成分子化工,低成本的花青染料并用作钙钛矿太阳能电池的空穴传输层(HTL)。使用PBI2使用原始和氰化物的溶液和膜研究了光学物理性质。 Cyanine-PBI2杂化材料的UV-Vis光谱揭示了在固态中的发色团之间的强耦合。使用螺欧比达或青霉素作为掺杂剂自由HTL制造钙钛矿太阳能电池。在螺纹欧比达作为掺杂剂自由的情况下,用v实现9.91%的PCE oc 1.02 v,j sc 22.3 mA / cm 2 和0.43的FF。另一方面,使用花青作为HTL提供了大量的PCE(15.4%)以及其他细胞参数,包括V oc (1.12 v),j sc (21.2 ma / cm 2 ),特别是FF(0.65),因为除了改进的电荷收集和使用Cyanine HTL运输之外,还原电荷重组的降低。

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