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Modification of dry/wet hybrid fabrication method for preparing a perovskite absorption layer on a PCBM electron transport layer

机译:干/湿混合制造方法的修改,用于在PCBM电子传输层上制备钙钛矿吸收层

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摘要

The fabrication method of a perovskite absorption layer on a [6,6]-phenyl-C _(61) -butyric acid methyl ester (PCBM) electron transport layer was investigated for application to perovskite/Si tandem photovoltaic devices. A dry/wet hybrid method that involves thermal evaporation of a PbI _(2) precursor followed by spin coating of an organic cation solution was found to be a useful means to form a perovskite layer without destruction of the underlying PCBM layer. To form the perovskite layer densely packed with crystals of large grain size and having smooth surface morphology, the rotational speed of the spin coating and the mixing ratio of organic cations were carefully modified. By using this modified absorption layer, a photovoltaic device fabricated under atmospheric exposure conditions showed a power conversion efficiency of ~10.3% without any large hysteresis. These results have great importance to develop a production technology for high performance tandem solar cells.
机译:研究了在[6,6]-苯基-C_(61)-丁酸甲酯(PCBM)电子传输层上钙钛矿吸收层的制备方法,并将其应用于钙钛矿/硅串联光伏器件中。发现干/湿混合方法涉及热蒸发PbI_(2)前驱物,然后旋涂有机阳离子溶液,是形成钙钛矿层而不破坏下面的PCBM层的有用方法。为了形成紧密填充有大晶粒尺寸的晶体并且具有光滑表面形态的钙钛矿层,旋涂的旋转速度和有机阳离子的混合比被仔细地改变。通过使用这种改良的吸收层,在大气暴露条件下制造的光电器件显示出〜10.3%的功率转换效率,而没有任何大的滞后现象。这些结果对于开发高性能串联太阳能电池的生产技术具有重要意义。

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