Yadav Bharti, Ravikanth Mangalampalli
Department of Chemistry, Indian Institute of Technology Bombay, Mumbai 400076, India.
Org Biomol Chem. 2024 Mar 6;22(10):1932-1960. doi: 10.1039/d3ob02116e.
The highly conjugated tetrapyrrolic porphyrin macrocycle and its contracted and expanded congeners have been extensively used for a wide range of applications across diverse research domains because of their captivating and intriguing features. Over the years, the porphyrin framework and electronic properties of porphyrinoids have been modified and tuned by replacing one or more pyrrole ring(s) with five- and six-membered heterocycles/carbacycles, and their resulting properties have been explored. In recent times, polycyclic aromatic hydrocarbons (PAHs), such as biphenyl, terphenyl, naphthalene, anthracene, phenanthrene, fluorene, pyrene and dibenzo[,]chrysene, have been used to replace one or more pyrrole rings of porphyrinoids, and resulting polycyclic-aromatic-embedded porphyrinoids show unique features that differ from those of other modified porphyrinoids. The polycyclic aromatic hydrocarbons in the porphyrinoid macrocyclic framework induce different π-conjugation pathways in macrocycles, exhibit variable degrees of aromaticity from nonaromatic to aromatic and antiaromatic and provide a unique ligand environment to form stable coordination and organometallic complexes in which metals show uncommon oxidation states and unusual reactivity. This review presents an overview of the synthesis, coordination chemistry, structure and properties of various porphyrinoids with an embedded PAH that have been reported to date.
高度共轭的四吡咯卟啉大环及其收缩和扩展的同系物,由于其迷人且有趣的特性,已在广泛的研究领域中被广泛应用于各种应用。多年来,通过用五元或六元杂环/碳环取代一个或多个吡咯环,对卟啉框架和类卟啉的电子性质进行了修饰和调整,并探索了其产生的性质。近年来,多环芳烃(PAHs),如联苯、三联苯、萘、蒽、菲、芴、芘和二苯并[,]chrysene,已被用于取代类卟啉的一个或多个吡咯环,所得的嵌入多环芳烃的类卟啉表现出与其他修饰类卟啉不同的独特特征。类卟啉大环框架中的多环芳烃在大环中诱导不同的π共轭途径,表现出从非芳香到芳香和反芳香的不同程度的芳香性,并提供独特的配体环境以形成稳定的配位和有机金属配合物,其中金属表现出不常见的氧化态和异常的反应性。本综述概述了迄今为止报道的各种嵌入PAH的类卟啉的合成、配位化学、结构和性质。