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Improved performance for polymer solar cells using CTAB-modified MoO3 as an anode buffer layer

机译:使用CTAB改性的MOO3作为阳极缓冲层的高分子太阳能电池的性能提高

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摘要

We report a method to prepare molybdenum oxide thin films using the stable cetrimonium bromide-modified MoO3 (CTAB-modified MoO3) precursor solution. The effect of thermal treatment on the optical, crystalline, morphologic properties and surface wettability is greatly obvious because of the pyrolytic decomposition of CTAB. The highly efficient and stable polymer solar cells (PSCs) have been also fabricated by adopting CTAB-modified MoO3 nanocomposite films as the novel and universal anode buffer layers (ABLs). The P3HT:ICBA based solar cells with CTAB-modified Mo03 at 200 degrees C heat treatment exhibit an best power conversion efficiency (PCE) of 5.80% with long-term stability, and the PTB7:PC71BM based solar cells with CTAB-modified MoO3 at 200 degrees C heat treatment show an best PCE of 8.34% with long-term stability, which are higher than that of the corresponding devices with PEDOT:PSS films. The improvement in device performance is mainly due to the agreeable electrical properties and enhanced charge extraction of the CTAB-modified MoO3 ABLs, and CTAB modification to the MoO3 surface can effectively passivate its surface traps, suppress the recombination loss of carriers. The surface of CTAB-modified MoO3 films is also more hydrophobic than that of the PEDOT:PSS. In a word, these indicate the CTAB-modified MoO3 films may be used as a novel and generally applicable hole transport layer for high-efficiency and ambient stable polymer solar cells.
机译:我们报告了一种使用稳定的香料溴改性的MOO3(CTAB改性MOO3)前体溶液制备氧化钼薄膜的方法。由于CTAB的热解分解,热处理对光学,结晶,形态学性能和表面润湿性的影响非常明显。通过采用CTAB改性的MOO3纳米复合膜作为新颖的和通用阳极缓冲层(ABLS),也已经制造了高效且稳定的聚合物太阳能电池(PSC)。 P3HT:基于ICBA的太阳能电池与200摄氏度的CTAB改性MO03,具有5.80%的最佳功率转换效率(PCE),具有长期稳定性,PTB7:基于PTB7:PC71BM基于CTAB改性的MOO3的太阳能电池200摄氏度的热处理显示,具有8.34%的最佳PCE,长期稳定性高于与PEDOT:PSS薄膜的相应装置的稳定性高8.34%。器件性能的改善主要是由于CTAB改性的MOO3 ABL的舒适电性能和增强的电荷提取,而CTAB改性为MOO3表面可以有效地钝化其表面陷阱,抑制载体的重组损失。 CTAB改性的MOO3薄膜的表面也比PEDOT:PSS更疏水。总之,这些表明CTAB改性的MOO3薄膜可以用作高效和环境稳定的聚合物太阳能电池的新颖和一般适用的空穴传输层。

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