首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >The combination of a new organic D-pi-A dye with different organic hole-transport materials for efficient solid-state dye-sensitized solar cells
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The combination of a new organic D-pi-A dye with different organic hole-transport materials for efficient solid-state dye-sensitized solar cells

机译:新型有机D-pi-A染料与不同的有机空穴传输材料的结合,可实现高效的固态染料敏化太阳能电池

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摘要

A new organic donor-pi-acceptor sensitizer MKA253 has been applied for highly efficient solid-state dye-sensitized solar cells (ssDSSCs). Using 2,2',7,7'-tetrakis(N,N-di-pi-methoxyphenyl-amine) 9,9'-spirobifluorene (Spiro-OMeTAD) as the hole transport material (HTM), an excellent power conversion efficiency of 6.1% was recorded together with a high short-circuit current of 12.4 mA cm(-2) under standard AM 1.5G illumination (100 mW cm(-2)). Different combinations of dyes and HTMs have also been investigated in the ssDSSC device. The results showed that small molecule HTM based devices suffer from comparably high electron recombination losses, thus causing low open-circuit voltage. In addition, photo-induced absorption (PIA) spectroscopy showed that the small-molecule HTMs lead to more efficient dye regeneration in comparison with Spiro-OMeTAD, despite a lower thermodynamic driving force. The results of this study also show that optimized energy levels for the dye-HTMs could be a vital factor for highly efficient ssDSSCs.
机译:新型有机供体-π-受体敏化剂MKA253已用于高效固态染料敏化太阳能电池(ssDSSCs)。使用2,2',7,7'-四(N,N-二-对甲氧基苯基胺)9,9'-螺双芴(Spiro-OMeTAD)作为空穴传输材料(HTM),具有出色的功率转换效率在标准AM 1.5G照明(100 mW cm(-2))下,记录到6.1%的电流以及12.4 mA cm(-2)的高短路电流。在ssDSSC设备中还研究了染料和HTM的不同组合。结果表明,基于小分子HTM的器件遭受相当高的电子重组损失,从而导致低的开路电压。此外,光诱导吸收(PIA)光谱显示,尽管具有较低的热力学驱动力,但与Spiro-OMeTAD相比,小分子HTM可以使染料再生更有效。这项研究的结果还表明,染料HTM的最佳能量水平可能是高效ssDSSC的重要因素。

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