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Effect of the nature of the anode buffer layer – MoO3, CuI or MoO3/CuI – on the performances of organic solar cells based on oligothiophene thin films deposited by sublimation

机译:moO3,CuI或moO3 / CuI - 基于升华沉积的低聚噻吩薄膜的有机太阳能电池性能

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摘要

An oligothiophene having a donor-acceptor-donor chromophore with hydrogen bonding groups is used as electron donor in planar heterojunction organic photovoltaic cells. We focus on the contact between the anode and the oligothiophene. Different anode buffer layers (ABLs) have been used, MoO3 and CuI, alone or coupled with MoO3. The thicknesses were 4 nm and 3 nm for MoO3 and CuI respectively. It is shown that the ABL improves the cells performances. The best results are achieved with the couple MoO3/CuI through an increase of the open circuit voltage and short circuit current. The optical absorption, the surface roughness and the organic film conductivity depend on the ABL. The conductivity of the oligothiophene film is one order of magnitude higher when the ABL is a CuI film. The influence of the ABL can be explained partly by the fact that it raises the anode work function. Nevertheless, the study of the structures ITO/ABL/oligothiophene shows that each ABL exhibits specific advantages and disadvantages. Therefore the couple MoO3/CuI allows summing up the advantages of both ABLs, MoO3 allows a very good band matching and avoids too high leakage current, while CuI allows achieving high Jsc thanks to its effect on the TTB conductivity.
机译:在平面异质结有机光伏电池中,具有具有氢键基团的供体-受体-供体生色团的低聚噻吩被用作电子供体。我们专注于阳极和低聚噻吩之间的接触。单独或与MoO3结合使用了不同的阳极缓冲层(ABL),MoO3和CuI。 MoO3和CuI的厚度分别为4 nm和3 nm。结果表明,ABL可以改善电池性能。通过增加开路电压和短路电流,使用MoO3 / CuI耦合可获得最佳结果。光学吸收,表面粗糙度和有机膜电导率取决于ABL。当ABL是CuI膜时,低聚噻吩膜的电导率高一个数量级。 ABL的影响可以部分地通过其提高阳极功函数的事实来解释。然而,对ITO / ABL /低聚噻吩结构的研究表明,每种ABL都具有特定的优点和缺点。因此,MoO3 / CuI耦合可以总结两个ABL的优势,MoO3可以实现非常好的带匹配并避免过高的漏电流,而CuI由于其对TTB电导率的影响而可以实现高Jsc。

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