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首页> 外文期刊>Dyes and Pigments >Synthesis of new conjugated small-molecule-dyes based on 2-(2-methyl-4H-chromen-4-ylidene)malononitrile as the electron-withdrawing group and their application in photovoltaic devices
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Synthesis of new conjugated small-molecule-dyes based on 2-(2-methyl-4H-chromen-4-ylidene)malononitrile as the electron-withdrawing group and their application in photovoltaic devices

机译:基于2-(2-甲基-4H-Chromen-4- ylidene)丙二腈作为电子取出基团的新共轭小分子染料的合成及其在光伏器件中的应用

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A series of new acceptor-donor-acceptor (A-D-A) type conjugated small-molecule-dyes based on indacenodithieno[3,2-b]thiophene (IDTT) and 2-(2-methyl-4H-chromen-4-ylidene)malononitrile (CMCN), named IDTT-CMCN and IDTT-HT-CMCN, have been synthesized for application in organic solar cells. A-D-A type small-molecules with CMCN can effectively form a powerful push-pull structure that induces effective intramolecular charge transport (ICT) and enhanced optical absorption. In comparison with IDTT-CMCN, IDTT-HT-CMCN has 3-hexylthiophene (HT) as a pi-bridge unit between the IDTT and CMCN moieties to increase the solubility and extend the pi-conjugation length. The resulting dye (IDTT-HT-CMCN) with a hexylthiophene ring as a pi-bridge showed a smaller band gap and better solubility. Thus, a power conversion efficiency (PCE) as high as 7.60% was achieved with a short circuit current of 12.7 mA/cm(2), open circuit voltage of 0.94 V, and fill factor of 63.8%. To the best of our knowledge, small-molecule-based donors with CMCN as an electron-withdrawing unit have never been reported before. In addition, the PCE of 7.60% reported in this work is highly efficient among the PCE reported for an organic solar cell using an IDTT-based small-molecule-donor material.
机译:基于IndaceNodithieno [3,2-B]噻吩(IDTT)和2-(2-甲基-4H-Chromen-4- ylidene)丙二腈的一系列新的受体 - 供体 - 受体(ADA)型共轭小分子染料(CMCN),名为IDTT-CMCN和IDTT-HT-CMCN,已合成用于有机太阳能电池中的应用。 A-D-A型具有CMCN的小分子可以有效地形成强大的推挽式结构,诱导有效的分子内电荷输送(ICT)和增强的光学吸收。与IDTT-CMCN相比,IDTT-HT-CMCN在IDTT和CMCN部分之间具有3-己基噻吩(HT),以增加溶解度并延长PI缀合长度。作为PI桥的所得染料(IDTT-HT-CMCC)具有己烯烯环,显示出较小的带隙和更好的溶解度。因此,通过短路电流为12.7 mA / cm(2),开路电压为0.94V,填充率为0.94V,填充率为63.8%,实现高达7.60%的电力转换效率(PCE),填充倍数为63.8%。据我们所知,以前从未报告过CMCN的基于小分子的供体,以前从未报道过电子提取单元。此外,在本作品中报告的7.60%的PCE在使用IDTT的小分子供体材料中报告的PCE中高效。

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