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首页> 外文期刊>Organic Electronics >Smart geometrical approach to intercalate a highly absorbing and quite resistive electron donor layer in ternary organic photovoltaic cells
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Smart geometrical approach to intercalate a highly absorbing and quite resistive electron donor layer in ternary organic photovoltaic cells

机译:智能几何方法在三元有机光伏电池中插入高吸收性和电阻性强的电子供体层

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Ternary organic photovoltaic cells (OPVs) have been shown to be a promising approach to increase cells efficiency through broadening of their absorption range. Often, ternary cells are based on a blend of two donors and one acceptor, the efficiency of planar ternary heterojunction being limited by the resistance of the three stacked layers. Here, we show that by depositing the intercalated layer through a grid we are able to decrease significantly the series resistance of the device, while the use of two donors allows improving the short circuit current and the efficiency of the organic photovoltaic cells. Electrical, optical and morphological studies show the ternary cell behaves like parallel OPVs. The first donor layer consists in an AlPcCl film, the acceptor layer is a C-60 film while the central layer consists in a laboratory made molecule called MD2. If the MD2 layer absorbs strongly the light and permits to the both types of carrier to diffuse, its carriers mobility is small. Therefore, the discontinuities, due to the grid, of the MD2 intercalated layer allow improving the cells efficiency over-passing the corresponding binary cells performances.
机译:三元有机光伏电池(OPV)已被证明是通过扩大其吸收范围来提高电池效率的一种有前途的方法。通常,三元电池基于两个施主和一个受主的混合物,平面三元异质结的效率受到三个堆叠层的电阻的限制。在这里,我们表明,通过网格沉积插层可以显着降低器件的串联电阻,而使用两个施主可以提高短路电流和有机光伏电池的效率。电学,光学和形态学研究表明三元电池的行为类似于并联的OPV。第一施主层由AlPcCl膜组成,受主层为C-60膜,而中间层由称为MD2的实验室制造分子组成。如果MD2层强烈吸收光并允许两种类型的载体扩散,则其载流子迁移率较小。因此,由于网格的原因,MD2插入层的不连续性允许改进的电池效率超过相应的二进制电池性能。

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