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Design and synthesis of tetraazachlorins, tetraazabacteriochlorins and tetraazaisobacteriochlorins

机译:四氮杂绿素,四氮杂绿藻素和四氮杂异绿藻素的设计与合成

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摘要

Three approaches to the synthesis of reduced derivatives of tetraazaporphine such as tetraazachlorin, tetraazabacteriochlorin, and tetraazaisobacteriochlorin are reviewed. The first synthesis of alkyl-substituted tetraazachlorins was achieved by the catalytic hydrogenation of magnesium complexes of tetraazaporphines. Two other synthesis approaches for reduced tetraazaporphines based on the mixed condensation of the precursors with different hydrogenation levels and beta-beta addition reactions have been developed in the last decade. The use of tetramethylsuccinonitrile as the saturated component in the mixed condensation with derivatives of aromatic and heteroaromatic dicarboxylic acids enable the synthesis of oxidation-resistant benzo-; 1,2- and 2,3-naphtho-; pyrazino-; 2,3- and 3,4-pyridino-fused tetraazachlorins, tetraazabacteriochlorins, and tetraazaisobacteriochlorins. Fullerene conjugates of reduced tetraazaporphine derivatives were obtained using 1,2-dicyanofullerene as the source of the hydrogenated sites. Tetraazaporphine can act as dienophile in Diels-Alder reaction with dienes of the anthracene and cyclopentadiene series and also as dipolarophile in 1,3-dipolar cycloadditions with azomethine ylides and nitrones. In addition, the effect of the reduction of peripheral double bonds in tetraazaporphine macrocycle alone, and in combination with annelation of benzene or heterocyclic rings on the absorption spectra is discussed.
机译:综述了三种合成四氮杂卟啉,四氮杂细菌氯霉素和四氮杂细菌氯霉素的还原衍生物的方法。烷基取代的四氮杂双氢卟酚的第一个合成是通过四氮杂四氢卟酚镁配合物的催化加氢实现的。在过去的十年中,已经开发了基于具有不同氢化水平的前体的混合缩合和β-β加成反应的其他两种还原四氮杂卟啉的合成方法。在与芳族和杂芳族二羧酸的衍生物混合缩合反应中,使用四甲基丁二腈作为饱和组分可以合成抗氧化的苯并-。 1,2-和2,3-萘-;吡嗪醇2,3-和3,4-吡啶基融合的四氮杂绿霉素,四氮杂细菌绿素和四氮杂异细菌绿素。使用1,2-二氰基富勒烯作为氢化位点的来源,获得了还原的四氮杂吗啡衍生物的富勒烯共轭物。在与蒽和环戊二烯系列的二烯发生Diels-Alder反应中,四氮杂卟啉可以作为亲二烯体,在与偶氮甲碱的亚硝基和硝酮形成的1,3-偶极环加成中也可以作为亲偶氮体。此外,还讨论了单独减少四氮杂吗啡大环中的外围双键以及结合苯或杂环的环化对吸收光谱的影响。

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