Dobeneck Michaela, Kaur Ramandeep, Platzer Benedikt, Guldi Dirk M, Hirsch Andreas
Department of Chemistry and Pharmacy, Friedrich-Alexander-University Erlangen-Nuremberg, Organic Chemistry II, Nikolaus-Fiebiger-Str. 10, 91058, Erlangen, Germany.
Department of Chemistry and Pharmacy, Friedrich-Alexander-University Erlangen-Nuremberg, Physical Chemistry I, Egerlandstr. 3, 91058, Erlangen, Germany.
Chemistry. 2021 Jun 4;27(32):8325-8336. doi: 10.1002/chem.202005335. Epub 2021 May 11.
A modified synthetic pathway towards perylene-perylene dimers and a facile purification method to obtain the regioisomerically pure syn- and anti-isomers are reported. In addition, a novel perylene-naphthalene heterodimer with 30 conjugated π-electron pairs was designed and synthesized on the basis of a previously described precursor and the resulting regioisomers were separated from each other. Thereby, the opto-electronic properties of the linearly elongated chromophores could be investigated regarding the differences in length of their aromatic system and the configuration of the isomers. Further tuning of their energy gaps was realized via protonation and methylation of the dibenzimidazole-bridging unit. Extraordinary red-shifts of the absorption maxima of 62 nm for the methylated and 92 nm for the protonated perylene-perylene anti-isomer could be achieved. Moreover, the maxima for the syn-isomer could be shifted bathochromically by 87 and 113 nm, respectively.
报道了一种改进的合成苝-苝二聚体的途径以及一种简便的纯化方法,以获得区域异构体纯的顺式和反式异构体。此外,基于先前描述的前体设计并合成了一种具有30个共轭π电子对的新型苝-萘杂二聚体,并将所得的区域异构体彼此分离。由此,可以研究线性伸长发色团的光电性质,涉及它们芳香体系长度的差异和异构体的构型。通过二苯并咪唑桥连单元的质子化和甲基化实现了它们能隙的进一步调节。对于甲基化的苝-苝反式异构体,吸收最大值可实现62 nm的异常红移,对于质子化的苝-苝反式异构体,吸收最大值可实现92 nm的异常红移。此外,顺式异构体的最大值分别可发生87和113 nm的红移。