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The synthesis, photochemical and photophysical properties of zinc aryloxy- and alkyloxy azaphthalocyanines

机译:芳氧基锌和烷氧基氮杂酞菁锌的合成,光化学和光物理性质

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Octasubstituted zinc tetrapyrazinoporphyrazines bearing butyloxy, octyloxy, 2,6-diisopropylphenoxy and 4-(hydroxymethyl)phenoxy substituents were synthesized from the corresponding 5,6-disubstituted pyrazine-2,3-dicarbonitriles using Zn(quinoline)2Cl2 in yields varying from 14 to 44%. The reaction procedure proved to be efficient for the synthesis of both alkyloxy- and aryloxy- substituted zinc tetrapyrazinoporphyrazines and did not require strictly anhydrous conditions. Optimal cyclotetramerization conditions were identified for each derivative, in terms of reaction temperature, as overheating cleaved the ether bond leaving a vacant OH group on the macrocycle. The photochemical and photophysical properties of the synthesized compounds were investigated in pyridine. Singlet oxygen quantum yields (φΔ) ranged from 0.49 to 0.61 and high fluorescence quantum yields (Φ_F) of ~0.30 were observed for non-aggregated compounds.
机译:使用Zn(喹啉)2Cl2从相应的5,6-二取代的吡嗪-2,3-二甲腈合成带有丁氧基,辛氧基,2,6-二异丙基苯氧基和4-(羟甲基)苯氧基取代基的八取代四吡嗪并卟啉锌,产率从14到44%。事实证明,该反应方法对于合成烷氧基和芳氧基取代的四吡嗪并卟啉锌是有效的,并且不需要严格的无水条件。根据反应温度,确定了每种衍生物的最佳环四聚条件,因为过热会裂解醚键,从而在大环上留下空置的OH基团。在吡啶中研究了合成化合物的光化学和光物理性质。非聚集化合物的单重态氧量子产率(φΔ)为0.49至0.61,高荧光量子产率(Φ_F)为〜0.30。

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