Shimizu Daiki, Osuka Atsuhiro
Department of Chemistry , Graduate School of Science , Kyoto University , Kyoto 606-8502 , Japan . Email:
Chem Sci. 2018 Jan 8;9(6):1408-1423. doi: 10.1039/c7sc05210c. eCollection 2018 Feb 14.
The non-innocent ligand nature of porphyrins was observed for compound I in enzymatic cycles of cytochrome P450. Such porphyrin radicals were first regarded as reactive intermediates in catabolism, but recent studies have revealed that porphyrinoids, including porphyrins, ring-contracted porphyrins, and ring-expanded porphyrins, display excellent radical-stabilizing abilities to the extent that radicals can be handled like usual closed-shell organic molecules. This review surveys four types of stable porphyrinoid radical and covers their synthetic methods and properties such as excellent redox properties, NIR absorption, and magnetic properties. The radical-stabilizing abilities of porphyrinoids stem from their unique macrocyclic conjugated systems with high electronic and structural flexibilities.
在细胞色素P450的酶促循环中,化合物I表现出卟啉的非惰性配体性质。这类卟啉自由基最初被认为是分解代谢中的反应中间体,但最近的研究表明,包括卟啉、环收缩卟啉和环扩展卟啉在内的类卟啉显示出优异的自由基稳定能力,以至于自由基可以像常见的闭壳层有机分子一样被处理。本综述概述了四类稳定的类卟啉自由基,并介绍了它们的合成方法以及诸如优异的氧化还原性质、近红外吸收和磁性等性质。类卟啉的自由基稳定能力源于其具有高电子和结构灵活性的独特大环共轭体系。