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在湾区位置带有不同取代基的苝四羧酸二亚胺环芳烃。

Cyclophanes of perylene tetracarboxylic diimide with different substituents at bay positions.

作者信息

Feng Junqian, Zhang Yuexing, Zhao Chuntao, Li Renjie, Xu Wei, Li Xiyou, Jiang Jianzhuang

机构信息

Key Lab for Colloid and Interface Chemistry of Education Ministry, Department of Chemistry, Shandong University, Jinan, China.

出版信息

Chemistry. 2008;14(23):7000-10. doi: 10.1002/chem.200800136.

Abstract

Cyclophanes of perylene tetracarboxylic diimides (PDIs) with different substituents at the bay positions, namely four phenoxy groups at the 1,7-positions (1), four piperidinyl groups at the 1,7-positions (2), and eight phenoxy groups at the 1,6,7,12-positions (3) of the two PDI rings, have been synthesized by the condensation of perylene dianhydride with amine in a dilute solution. These novel cyclophanes were characterized by (1)H NMR spectroscopy, MALDI-TOF mass spectrometry, electronic absorption spectroscopy, and elemental analysis. The conformational isomers of cyclophanes substituted with four piperidinyl groups at the 1,7-positions (2 a and 2 b) were successfully separated by preparative TLC. The main absorption band of the cyclophanes shifts significantly to the higher energy side in comparison with their monomeric counterparts, which indicates significant pi-pi interaction between the PDI units in the cyclophanes. Nevertheless, both the electronic absorption and fluorescence spectra of the cyclophanes were found to change along with the number and nature of the side groups at the bay positions of the PDI ring. Time-dependent DFT calculations on the conformational isomers 2 a and 2 b reproduce well their experimental electronic absorption spectra. Electrochemical studies reveal that the first oxidation and reduction potentials of the PDI ring in the cyclophanes increase significantly compared with those of the corresponding monomeric counterparts, in line with the change in the energy of the HOMO and LUMO according to the theoretical calculations.

摘要

在苝四羧酸二亚胺(PDI)的间位带有不同取代基的环芳,即在两个PDI环的1,7位有四个苯氧基(1)、1,7位有四个哌啶基(2)以及1,6,7,12位有八个苯氧基(3),已通过苝二酐与胺在稀溶液中的缩合反应合成。这些新型环芳通过¹H NMR光谱、基质辅助激光解吸电离飞行时间质谱、电子吸收光谱和元素分析进行了表征。在1,7位被四个哌啶基取代的环芳的构象异构体(2a和2b)通过制备薄层层析成功分离。与单体对应物相比,环芳的主要吸收带显著向更高能量侧移动,这表明环芳中PDI单元之间存在显著的π-π相互作用。然而,发现环芳的电子吸收光谱和荧光光谱都随着PDI环间位侧基的数量和性质而变化。对构象异构体2a和2b进行的含时密度泛函理论计算很好地重现了它们的实验电子吸收光谱。电化学研究表明,与相应的单体对应物相比,环芳中PDI环的首次氧化和还原电位显著增加,这与理论计算中HOMO和LUMO能量的变化一致。

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