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吡咯并卟啉:在大环框架内纳入多环芳烃单元的卟啉类似物。

Pyreniporphyrins: Porphyrin Analogues That Incorporate a Polycyclic Aromatic Hydrocarbon Subunit within the Macrocyclic Framework.

机构信息

Department of Chemistry, Illinois State University , Normal, Illinois 61790-4160, United States.

出版信息

J Org Chem. 2017 Jul 7;82(13):6680-6688. doi: 10.1021/acs.joc.7b00829. Epub 2017 Jun 15.

Abstract

The first examples of porphyrin analogues incorporating pyrene units are reported. Acid-catalyzed condensation of a pyrene dialdehyde with a tripyrrane, followed by oxidation with DDQ, afforded a polycyclic aromatic hydrocarbon (PAH)-porphyrin hybrid in 38% yield. Pyreniporphyrin proved to be devoid of global aromatic character, but upon protonation aromatic mono- and dicationic species were generated. In the proton NMR spectrum for the dication, the internal CH was shifted upfield to approximately +3 ppm. NICS calculations and ACID plots confirmed the diatropic nature of these structures. Pyreniporphyrin reacted with palladium(II) acetate to give excellent yields of a palladium(II) complex that showed weakly diatropic properties. Treatment of the pyrene dialdehyde with phenylmagnesium bromide generated a dicarbinol that reacted with excess pyrrole in the presence of boron trifluoride etherate to give a tripyrrane analogue. Lewis acid catalyzed ring closure with a thiophene dialcohol in 2% ethanol-dichloromethane afforded a tetraphenylthiapyreniporphyrin in 31% yield. This porphyrinoid was nonaromatic in the free-base form but showed significant diatropicity upon protonation. These results demonstrate that PAH-porphyrin hybrids are easily accessible, and this strategy may allow the incorporation of even larger aromatic subunits.

摘要

报告了首例包含并吡咯单元的卟啉类似物的例子。酸催化缩合吡咯并甲醛与三吡咯烷,然后用 DDQ 氧化,以 38%的产率得到多环芳烃(PAH)-卟啉杂化物。吡咯并卟啉证明没有全局芳香特征,但质子化后会生成单和二阳离子芳族物种。在二阳离子的质子 NMR 谱中,内部 CH 被移至大约 +3 ppm 的场。NICS 计算和 ACID 图证实了这些结构的反磁性质。吡咯并卟啉与醋酸钯(II)反应,以优异的产率得到钯(II)络合物,该络合物表现出较弱的反磁性质。用苯基溴化镁处理吡咯并甲醛生成二醛,在三氟化硼乙醚存在下与过量吡咯反应,得到三吡咯烷类似物。路易斯酸催化噻吩二醇在 2%乙醇-二氯甲烷中的闭环反应,以 31%的产率得到四苯基噻吩并吡咯并卟啉。这种卟啉类化合物在自由碱形式下是非芳香的,但质子化后表现出显著的反磁性质。这些结果表明,PAH-卟啉杂化物很容易获得,并且该策略可能允许甚至更大的芳香亚基的掺入。

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