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首页> 外文期刊>Journal of porphyrins and phthalocyanines >Synthesis of A(2)B-type 22-oxacorroles bearing two different five-membered heterocycles at meso positions
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Synthesis of A(2)B-type 22-oxacorroles bearing two different five-membered heterocycles at meso positions

机译:在Meso位置携带两种不同五元杂环的(2)B型22-氧棘氏菌的合成

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A series of 22-oxacorroles containing mixed substituents such as either two five-membered heterocycles and one six-membered aryl group or three five-membered heterocycles at three meso positions were synthesized by 3 + 2 oxidative coupling of appropriate 16-oxatripyrrane and meso-substituted dipyrromethane under mild acid catalyzed conditions. The identities of the 22-oxacorroles were confirmed by the respective molecular ion peaks in HR-MS spectra and the structures were deduced by detailed 1D and 2D NMR spectroscopy. NMR studies clearly showed upfield or downfield shifts of core pyrrole and furan protons and inner NH protons depending on the type of substituent present at the meso positions. All 22-oxacorroles absorb in the 410-655 nm region, and the position of the absorption bands depends on the type of meso substituents. The A(2)B oxacorroles showed one broad and weak fluorescence band in the 600-700 nm region with low fluorescence quantum yields in the 0.05-0.12 range. Electrochemical studies revealed that the A(2)B-type 22-oxacorroles are easier to oxidize and also easier to reduce than triphenyl 22-oxacorroles. Thus, the electronic properties of 22-oxacorroles were significantly altered when six-membered aryl groups were replaced with five-membered heterocycles as reflected in spectral and electrochemical measurements.
机译:含有混合取代基的一系列22-氧代摩尔,例如两个五元杂环和一个六元芳基或三个偏芳基或三个五元芳基或三个五元杂项,合成3 + 2氧化偶联的适当的16-氧钛合丙烷和中学在轻度酸催化条件下取代的偶氮甲烷。通过HR-MS光谱中的各个分子离子峰确认22-氧代摩尔的同一性,并通过详细的1D和2D NMR光谱推导出结构。根据中间位置存在的取代基的类型,NMR研究清楚地显示了核心吡咯和呋喃质子和内部NH质子的下场或下部NH质子。所有22-氧代摩尔吸收在410-655nm区域中,吸收带的位置取决于甲基取代基的类型。在0.05-0.12范围内,A(2)B氧化橄榄在600-700nm区域中显示出600-700nm区域中的一个宽且弱荧光带。电化学研究表明,A(2)B型22-氧棘龙腐蚀性更容易氧化,并且也比三苯基22-氧棘咀氧化更容易。因此,当用5-元杂环被频谱和电化学测量反映,用五元杂环替换六元芳基时,显着改变了22-氧棘磨的电子性质。

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