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A new dibenzo[g.p]chrysene derivative as an efficient anode buffer for inverted polymer solar cells

机译:一种新型的二苯并[g.p]丙烯衍生物,可作为反向聚合物太阳能电池的有效阳极缓冲剂

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摘要

A new dibenzo[g,p]chrysene derivative, 3,6,11,14-tetramethoxyphenylamine-dibenzo[g,p]chrysene (MeOPhN-DBC), has been designed and synthesized. This material shows good hole-transport ability, high thermal stability, and relatively high HOMO/LUMO, suitable for anode buffer in electronic devices. When 4 nm MeOPhN-DBC was inserted between the active layer and MoO3 to form double interfacial layers in the inverted polymer solar cells based on poly (3-hexylthiophene) (P3HT) and phenyl-C61-butyric acid methyl ester (PCBM) blended active layer, the power conversion efficiency was improved 24.7% compared to device with only MoO3 buffer (2.95% vs 3.68%). As demonstrated by photoluminescence, electrochemical impedance spectroscopy and the atom force microscopy, as well as the energy level diagram, the insertion of MeOPhN-DBC inter layer can block exciton quenching, improve electrical conductivity of the device, smooth interfacial contact, block electron flow toward anode and thus suppress carrier recombination there, leading to improved hole extraction and OPV device performance. This work demonstrates for the first time that dibenzo[g,p]chrysene derivatives can be promising materials for anode buffer in electronic devices.
机译:设计并合成了一种新的二苯并[g,p]丙烯衍生物3,6,11,14-四甲氧基苯胺-二苯并[g,p]丙烯(MeOPhN-DBC)。该材料具有良好的空穴传输能力,高的热稳定性和较高的HOMO / LUMO,适用于电子设备中的阳极缓冲。当在活性层和MoO3之间插入4 nm MeOPhN-DBC以在基于聚(3-己基噻吩)(P3HT)和苯基-C61-丁酸甲酯(PCBM)混合活性物质的倒置聚合物太阳能电池中形成双层界面层时与只有MoO3缓冲的器件相比,功率转换效率提高了24.7%(2.95%对3.68%)。如通过光致发光,电化学阻抗谱和原子力显微镜以及能级图所证明的,插入MeOPhN-DBC中间层可以阻止激子猝灭,提高器件的电导率,使界面接触平滑,阻止电子流向阳极,从而抑制那里的载流子复合,从而改善空穴提取和OPV器件性能。这项工作首次证明了二苯并[g,p] ch衍生物可以成为电子设备中阳极缓冲剂的有前途的材料。

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