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首页> 外文期刊>Dyes and Pigments >Synthesis, characterization and photo physical-theoretical analysis of D-pi-A compounds. 2. Chain length effect through even-odd effect on the photophysical properties
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Synthesis, characterization and photo physical-theoretical analysis of D-pi-A compounds. 2. Chain length effect through even-odd effect on the photophysical properties

机译:D-PI-A化合物的合成,表征和照片物理理论分析。 2.通过偶奇效应对光物理性质的厚度效应

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In the continuous search for new compounds for solar devices, the family of dipolar D-pi-A molecules, which have a donor (D) and an acceptor (A) charge joined by a conjugate bridge, have been the focus of attention in the recent years due their different properties. As we have shown before, there is a connection between the geometry of molecules based on tertiary asymmetric amines and their quantum yield. In the current work, four new compounds based on the same backbone molecule ((E)-2-cyano-3-(5-((E)-2-(9,9-diethyl-7-(phenylamino)-9H-fluoren-2-yl)vinyl)thiophen-2-yl)acrylic acid), but with different substituent, were synthesized. It is shown that the chain-size of the substituent group modifies the quantum yield. The news substituents introduced are a propyl (M8-3), butyl (M8-4), pentyl (M8-5) or hexyl (M8-6) group. In general, it was possible to see that the new substituents were able to increase their performances. Furthermore, an odd-even substituent effect, between propyl/pentyl and butyl/hexyl, was found and the theoretical geometrical data was able to follow the trend. However, theoretically, this substituent effect was inverted in the case of M8-3 and M8-4, which may be due to the disappearance in the emission patterns of an excited state close to 450 nm (at lambda(2)), as it was shown in the experimental data. The most suitable behaviour belongs to [(E)-2-cyano-3-(5-((E)-2-(9,9-diethyl-7(phenyl(propyl)amino)-9H-fluoren-2-yl)vinyl)thiophen-2-yl)acrylic acid] (M8-3). M8-3 has the highest quantum yields on average in all studied solvents; even higher than the last reported compounds with methyl (M8-1) and ethyl (M8-2) groups. Theoretically, the most likely explanation is that the dihedral angle formed between the carbonyl acceptor and nitrogen electron donor (Aryl-CO), should be as small as the molecule M8-3. This isolated compound has an average quantum yield including all solvents of 58.1% (average value), showing that a long group is not necessary to improve the performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在不断搜索的太阳能器件的新化合物中,偶极D-PI-A分子系列具有供体(D)和由共轭桥连接的受体(A)电荷的分子一直是关注的焦点近年来他们不同的财产。如前所述,基于叔不对称胺及其量子产率存在分子的几何形状之间存在连接。在当前的工作中,基于相同骨干分子的四种新化合物((e)-2-氰基-3-(5 - (((e)-2-(9,9-二乙基-7-(苯基氨基)-9h-氟醚-2-基)乙烯基)噻吩-2-基)丙烯酸,但用不同的取代基合成。结果表明取代基的链尺寸改变量子产率。引入的新闻取代基是丙基(M8-3),丁基(M8-4),戊基(M8-5)或己基(M8-6)基团。通常,有可能看出新的取代基能够增加其性能。此外,发现丙基/戊基和己基/己基之间的奇数偶数取代基效应,理论几何数据能够遵循趋势。然而,理论上,在M8-3和M8-4的情况下,该取代基效应被倒置,这可能是由于突出状态的发射模式的消失,接近450nm(在Lambda(2))中,如图所示显示在实验数据中。最合适的行为属于[(e)-2-氰基-3-(5 - ((e)-2-(9,9,9-二乙基-7(苯基)氨基)-9H-氟-2-基)乙烯基)噻吩-2-基)丙烯酸](M8-3)。 M8-3在所有研究的溶剂中平均量的量子产量最高;甚至高于上次报道的甲基(M8-1)和乙基(M8-2)基团的化合物。从理论上讲,最可能的解释是形成在羰基受体和氮电子供体(芳基-CO)之间形成的二偏角角度,应小于分子M8-3。该分离的化合物的平均量子产率,包括58.1%(平均值)的所有溶剂,表明不需要长组来提高性能。 (c)2017 Elsevier Ltd.保留所有权利。

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