Graduate School of Science and Engineering, Ehime University, 2-5, Matsuyama, 790-8577, Japan.
Chemistry. 2011 Mar 14;17(12):3376-83. doi: 10.1002/chem.201002788. Epub 2011 Feb 21.
The synthesis of dodecasubstituted porphycenes has not been reported, to date. Herein, the preparation of tetramethyloctaethylporphycene by a McMurry-type coupling of 3,3',4,4'-tetraethyl-5,5'-diformyl-2,2'-bipyrrole was attempted at first, but dodecasubstituted porphycene was not successfully obtained and only pyrrolocyclophene was obtained. The structure of the pyrrolocyclophene was determined by (1)H NMR spectroscopy, FAB MS, and X-ray crystal-structure analysis. The pyrrolocyclophene was not successfully oxidized to porphycene. Then, the McMurry-type coupling of bicyclo[2.2.2]octadiene (BCOD)-fused 5,5'-diacyl-2,2'-bipyrroles was performed and tetra-meso-octa-β-substituted (dodecasubstituted) porphycenes were successfully obtained for the first time. The structures were determined by (1)H NMR spectroscopy and X-ray crystal-structure analysis. The crystal structures and NMR spectra were compared carefully with octasubstituted porphycenes, and there was a good correlation between the position of the substituents, the N1−−N2 and N1−−N4 distances of the porphycene inner nitrogen atoms, and NMR chemical shifts of the inner NH protons, which expressed the strength of N−−H⋅⋅⋅N hydrogen bonding between N1 and N2. These results suggested that the BCOD structure was relatively compact compared with common alkyl groups and that was why the dodecasubstituted porphycenes were available this time. UV/Vis absorption and fluorescence properties are also discussed.
迄今为止,尚未有关于十二取代卟吩的合成报道。在此,我们首次尝试通过 3,3',4,4'-四乙基-5,5'-二醛基-2,2'-联吡咯的 McMurry 型偶联反应制备四甲基辛乙基卟吩,但未能成功获得十二取代卟吩,仅得到了吡咯并环戊烯。通过(1)H NMR 光谱、FAB MS 和 X 射线晶体结构分析确定了吡咯并环戊烯的结构。吡咯并环戊烯未能成功氧化为卟吩。然后,进行了双环[2.2.2]辛二烯(BCOD)稠合的 5,5'-二酰基-2,2'-联吡咯的 McMurry 型偶联反应,首次成功获得了四 -meso-辛-β-取代(十二取代)卟吩。通过(1)H NMR 光谱和 X 射线晶体结构分析确定了它们的结构。仔细比较了晶体结构和 NMR 谱,取代基的位置、卟吩内氮原子的 N1−−N2 和 N1−−N4 距离以及内 NH 质子的 NMR 化学位移与卟吩内氮原子之间的 N−−H···N 氢键强度之间存在很好的相关性,这表明 BCOD 结构与常见的烷基相比相对紧凑,这就是这次能够获得十二取代卟吩的原因。还讨论了紫外/可见吸收和荧光性质。