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A Simple Approach to Fabricate an Efficient Inverted Polymer Solar Cell with a Novel Small Molecular Electrolyte as the Cathode Buffer Layer

机译:一种使用新型小分子电解质作为阴极缓冲层的高效转化聚合物太阳能电池的简单方法

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A novel small-molecule electrolyte, 1,1'-bis(4-hydroxypropyl)[4,4'-bipyridine]-1,1'-diium bromide (V-OH), containing a mixture of PTB7:PC71BM has been designed and synthesized as a cathode buffer layer for inverted polymer solar cells (iPSCs). The molecular structure of this new compound comprises a viologen skeleton with hydroxyl group terminals. While the viologen unit is responsible for generating a favorable interface dipole, the two terminal hydroxyl groups of V-OH may generate a synergy effect in the magnitude of the interface dipole. Consequently, the devices containing the V-OH interlayer exhibited a power conversion efficiency (PCE) of 9.13% (short circuit current = 17.13 mA/cm(2), open circuit voltage = 0.75 V, fill factor = 71.1%). The PCE of the devices with V-OH exhibited better long-term stability compared to that of the devices without V-OH. Thus, we found that it is possible to enhance the efficiency of PSCs by a simple approach without the need for complicated methods of device fabrication.
机译:设计了一种新型的小分子电解质,其中包含PTB7:PC71BM的混合物,即1,1'-双(4-羟丙基)[4,4'-联吡啶] -1,1'-溴化二碘(V-OH)并合成为反向聚合物太阳能电池(iPSC)的阴极缓冲层。这种新化合物的分子结构包括带有羟基末端的紫精骨架。尽管紫精单元负责产生有利的界面偶极子,但V-OH的两个末端羟基可能会在界面偶极子的大小上产生协同效应。因此,包含V-OH中间层的器件的功率转换效率(PCE)为9.13%(短路电流= 17.13 mA / cm(2),开路电压= 0.75 V,填充系数= 71.1%)。与没有V-OH的器件相比,具有V-OH的器件的PCE表现出更好的长期稳定性。因此,我们发现可以通过简单的方法来提高PSC的效率,而无需复杂的器件制造方法。

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