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An efficient hole transport material composite based on poly(3-hexylthiophene) and bamboo-structured carbon nanotubes for high performance perovskite solar cells

机译:基于聚(3-己基噻吩)和竹结构碳纳米管的高效空穴传输材料复合材料,用于高性能钙钛矿太阳能电池

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摘要

In this work, we have developed a new efficient hole transport material (HTM) composite based on poly(3-udhexylthiophene) (P3HT) and bamboo-structured carbon nanotubes (BCNs) for CH3NH3PbI3 (MAPbI3) basedudperovskite solar cells. Compared to pristine P3HT, it is found that the crystallinity of P3HT was significantlyudimproved by addition of BCNs, which led to over one order of magnitude higher conductivity for the composite containing 1–2 wt% BCNs in P3HT. In the meantime, the interfacial charge transfer between the MAPbI3 light absorbing layer and the HTM composite layer based on P3HT/BCNs was two-fold faster than pristine P3HT. More importantly, the HTM film with a superior morphological structure consisting of closely compact large grains was achieved with the composite containing 1 wt% BCNs in P3HT. The study by electrochemical impedance spectroscopy has confirmed that the electron recombination in the solarudcells was reduced nearly ten-fold with the addition of 1 wt% carbon nanotubes in the HTM composite. Owing to the superior HTM film morphology and the significantly reduced charge recombination, the energy conversion efficiency of the perovskite solar cells increased from 3.6% for pristine P3HT to 8.3% for P3HT/(1 wt% BCNs) with a significantly enhanced open circuit voltage (Voc) and fill factor (FF). The findings of this work are important for development of new HTM for high performance perovskite solar cells.
机译:在这项工作中,我们开发了一种新型的高效空穴传输材料(HTM)复合材料,该复合材料基于聚(3- 己二基噻吩)(P3HT)和基于竹结构的碳纳米管(BCN),用于基于CH3NH3PbI3(MAPbI3) udperovskite太阳能电池。与原始的P3HT相比,发现通过添加BCN可以显着改善P3HT的结晶度,这导致P3HT中含有1-2 wt%BCN的复合材料的电导率提高了一个数量级。同时,基于P3HT / BCN的MAPbI3吸光层和HTM复合层之间的界面电荷转移比原始P3HT快两倍。更重要的是,通过在P3HT中包含1 wt%BCN的复合材料,获得了具有由紧密致密的大晶粒组成的具有优异形态结构的HTM膜。通过电化学阻抗谱的研究已经证实,通过在HTM复合材料中添加1 wt%的碳纳米管,太阳能电池中的电子重组减少了近十倍。由于具有优异的HTM膜形态和显着减少的电荷复合,钙钛矿太阳能电池的能量转换效率从原始P3HT的3.6%提高到P3HT /(1 wt%BCN)的8.3%,并且开路电压显着提高( Voc)和填充系数(FF)。这项工作的发现对于开发用于高性能钙钛矿太阳能电池的新型HTM具有重要意义。

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