Novosibirsk Institute of Organic Chemistry, Siberian Branch of Russian Academy of Sciences (SB RAS), Academician Lavrentiev Ave. 9, 630090 Novosibirsk, Russia.
Department of Chemistry, Institute of Chemistry of Antioxidants, Novosibirsk State Pedagogical University, Vilyuyskaya Str. 28, 6301026 Novosibirsk, Russia.
Molecules. 2020 Jul 8;25(14):3118. doi: 10.3390/molecules25143118.
Cyclic nitrones of the imidazole series, containing a sterically hindered phenol group, are promising objects for studying antioxidant activity; on the other hand, they can form persistent hybrid phenoxyl-nitroxyl radicals (HPNs) upon oxidation. Here, a series of 5-aryl-4,4-dimethyl-4-imidazole 3-oxides was obtained by condensation of aromatic 2-hydroxylaminoketones with 4-formyl-2,6-dialkylphenols followed by oxidation of the initially formed -hydroxy derivatives. It was shown that the antioxidant activity of both 1-hydroxy-2,5-dihydroimidazoles and 4-imidazole 3-oxides increases with a decrease in steric volume of the alkyl substituent in the phenol group, while the stability of the corresponding HPNs generated from 4-imidazole 3-oxides reveals the opposite tendency.
咪唑系列的环状亚硝酮,含有一个空间位阻酚基团,是研究抗氧化活性的有前途的对象; 另一方面,它们在氧化时可以形成持久的混合苯氧自由基-亚硝自由基 (HPN)。在这里,通过芳香族 2-羟基氨基酮与 4-甲酰基-2,6-二烷基苯酚缩合,然后氧化最初形成的 -羟基衍生物,得到了一系列 5-芳基-4,4-二甲基-4-咪唑 3-氧化物。结果表明,1-羟基-2,5-二氢咪唑和 4-咪唑 3-氧化物的抗氧化活性均随酚羟基中烷基取代基的空间体积减小而增加,而由 4-咪唑 3-氧化物生成的相应 HPN 的稳定性则呈现相反的趋势。