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Synthesis and Structure-Property Relationship of Several Dicyanomethylene Malononitrile Derivatives

机译:几种二氰基亚甲基丙二腈衍生物的合成及其结构与性能的关系

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Based on the intramolecular charge-transfer (ICT) molecule 2-[bis-(4'-diethylamino-biphenyl-4-yl)-methylene]-malononitrile (D7), two novel malononitrile derivatives (C1 and C2) with 2,7- and 3,6-substituted fluorene as conjugated backbones, respectively, were synthesized, which had the same electro-donor and acceptor groups as D7. The effects of the conjugated backbone and substitution site on optical properties of these compounds were investigated. 3,6-substituted fluorene is a better conjugated unit for ICT compared to 2,7 substitution site, whereas it is still weaker than diphenylmethyl unit in D7. However, due to the rigidity of fluorene, C2 possesses much higher fluorescence quantum yield. The results are supported by TD-DFT calculation. This study develops theoretical basis for designing effective optical or electronic materials.
机译:基于分子内电荷转移(ICT)分子2- [双-(4'-二乙氨基-联苯-4-基)-亚甲基]-丙二腈(D7),两个具有2,7的新型丙二腈衍生物(C1和C2)分别合成了-和3,6-取代的芴作为共轭骨架,它们具有与D7相同的电子供体和受体基团。研究了共轭骨架和取代位点对这些化合物的光学性质的影响。与2,7取代位点相比,3,6-取代芴是ICT更好的共轭单元,而在D7中,它仍然比二苯甲基单元弱。然而,由于芴的刚性,C 2具有更高的荧光量子产率。 TD-DFT计算支持结果。这项研究为设计有效的光学或电子材料提供了理论基础。

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