Grabowski Eric Y, AbuSalim Deyaa I, Lash Timothy D
Department of Chemistry , Illinois State University , Normal , Illinois 61790-4160 , United States.
J Org Chem. 2018 Oct 5;83(19):11825-11838. doi: 10.1021/acs.joc.8b01748. Epub 2018 Sep 11.
Acid-catalyzed condensation of a benzo[ f]indane dialdehyde with a tripyrrane, followed by an oxidation step, afforded the first example of a naphtho[2,3- b]-21-carbaporphyrin. This π-extended porphyrinoid system is strongly aromatic and gave a porphyrin-like UV-vis spectrum with a Soret band at 432 nm. Protonation with TFA gave a monocation, but under highly acidic conditions a C-protonated dication was generated. Reaction of the naphthoporphyrin with ferric chloride produced a 21-chloro derivative. Alkylation with methyl iodide and potassium carbonate gave a 22-methyl derivative, and this reacted with palladium(II) acetate to afford a palladium(II) complex in which the internal methyl group had migrated from a nitrogen to a carbon atom. Treatment of the naphthocarbaporphyrin with silver(I) acetate generated the corresponding silver(III) complex. In naphtho[2,3- b]-21-carbaporphyrin and many of its derivatives, the aromatic conjugation pathways appear to bypass the naphthalene unit, and for this reason the UV-vis spectra were little affected. However, the diprotonated dication and the palladium(II) complex have aromatic pathways that pass through the naphthalene moiety, and this leads to large bathochromic shifts for these species. The results provide insights on the influence of fused aromatic units on the reactivity, spectroscopic properties, and aromatic characteristics of carbaporphyrinoid systems.
苯并[f]茚满二醛与三吡咯在酸催化下缩合,随后经过氧化步骤,得到了萘并[2,3 - b]-21-碳卟啉的首个实例。这个π-扩展的类卟啉体系具有很强的芳香性,给出了类似卟啉的紫外-可见光谱,其Soret带位于432 nm处。用三氟乙酸质子化得到单阳离子,但在高酸性条件下会生成C-质子化的二价阳离子。萘卟啉与氯化铁反应生成21-氯衍生物。用碘甲烷和碳酸钾进行烷基化反应得到22-甲基衍生物,该衍生物与醋酸钯(II)反应得到一种钯(II)配合物,其中内部甲基从氮原子迁移到了碳原子上。用醋酸银(I)处理萘并碳卟啉生成相应的银(III)配合物。在萘并[2,3 - b]-21-碳卟啉及其许多衍生物中,芳香共轭途径似乎绕过了萘单元,因此紫外-可见光谱受影响较小。然而,双质子化的二价阳离子和钯(II)配合物具有穿过萘部分的芳香途径,这导致这些物种出现较大的红移。这些结果为稠合芳香单元对碳卟啉类体系的反应性、光谱性质和芳香特性的影响提供了见解。