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Role of additional PCBM layer between ZnO and photoactive layers in inverted bulk-heterojunction solar cells

机译:ZnO和光敏层之间的额外PCBM层在倒置体异质结太阳能电池中的作用

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摘要

In order to induce greater light absorption, nano-patterning is often applied to the metal-oxide buffer layer in inverted bulk-heterojunction(BHJ) solar cells. However, current homogeneity was significantly disturbed at the interface, leading to an efficiency that was not fully optimized. In this work, an additional PC61BM layer was inserted between the ZnO ripple and the photoactive layer to enhance the electron extraction. The insertion of additional PC61BM layer provided substantial advantages in the operation of inverted BHJ solar cells; specifically, it enhanced current homogeneity and lowered accumulation and trapping of photogenerated charges at the ZnO interface. Inclusion of the additional PC61BM layer led to effective quenching of electron–hole recombination by a reduction in the number of accumulated charges at the surface of ZnO ripples. This resulted in a 16% increase in the efficiency of inverted BHJ solar cells to 7.7%, compared to solar cells without the additional PC61BM layer.
机译:为了引起更大的光吸收,通常在倒置体异质结(BHJ)太阳能电池中将纳米图案应用于金属氧化物缓冲层。但是,电流的均匀性在界面处受到严重干扰,导致效率没有得到充分优化。在这项工作中,在ZnO波纹和光敏层之间插入了一个额外的PC61BM层,以增强电子提取。插入额外的PC61BM层为倒置BHJ太阳能电池的运行提供了实质性优势。特别是,它增强了电流均匀性,并降低了ZnO界面上光生电荷的积累和俘获。包含额外的PC61BM层可通过减少ZnO波纹表面的累积电荷数量来有效淬灭电子-空穴复合。与没有附加PC61BM层的太阳能电池相比,这使倒置BHJ太阳能电池的效率提高了16%,达到7.7%。

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