首页> 外文期刊>Journal of Fluorine Chemistry >Perfluorinated porphyrazines. 3. Synthesis, spectral-luminescence and electrochemical properties of perfluorinated octaphenylporphyrazinatozinc(II)
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Perfluorinated porphyrazines. 3. Synthesis, spectral-luminescence and electrochemical properties of perfluorinated octaphenylporphyrazinatozinc(II)

机译:全氟卟啉。 3.全氟化八度蛋白酶碱(II)的合成,光谱 - 发光和电化学性质

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Octakis(pentafluorophenyl)porphyrazinatozinc(II), [ZnPAF40], has been prepared by template cyclotetramerization of perfluorinated α,β-dicyanostylbene in the presence of ZnCl2in a melt. Influence of perfluorination of phenyl rings on spectral, electrochemical and acid-base properties of porphyrazine macrocycle is revealed by comparison with octaphenylporphyrazinatozinc(II), [ZnPA], which was prepared similarly from trans-α,β-dicyanostylbene. B3LYP DFT calculations show that perfluorination of phenyl rings stabilizes the frontier molecular orbitals of the porphyrazine macrocycle and slightly increases the HOMO-LUMO gap. As a result the reduction of the macrocycle is strongly facilitated and observed for [ZnPAF40] at 0.26?V vs Ag/AgCl, by 0.56?V in the less negative region as compared to [ZnPA]. Perfluorination leads to hypsochromic shift of the Q-band (lowest ππ* transition) in the electronic absorption spectra from 633?nm for [ZnPA] to 623?nm for [ZnPAF40] and increases the fluorescence quantum yield ФFfrom 0.12 to 0.19, respectively (values in THF). [ZnPAF40] has higher efficiency in generation of singlet oxygen (ФΔ?=?0.60) than [ZnPA] (ФΔ?=?0.37) (in THF). Introduction of 40 fluorine atoms decreases the basicity of the porphyrazine macrocycle almost by 3 orders of magnitude according to spectrophotometric titration study in CH2Cl2-CF3COOH medium.
机译:八烷基(五氟苯基)卟啉硅酸锌(II),[ZnPAF40],通过模板在ZnCl 2素熔体存在下进行全氟化α,β-二氰雌酰苯烯的模板循环四胺化制备。通过与辛基酰基吡嗪锌(II),α,β-二氰烷基苯乙烯类似的比较,揭示了磷酸甲酰胺卟啉致卟啉致癌卟啉致卟啉宏环的光谱,电化学和酸碱性质的影响。 B3LYP DFT计算表明,苯环的全氟稳定了卟啉宏循环的前沿分子轨道,并略微增加了Homo-Lumo间隙。结果,与[ZnPa]相比,在0.26〜Ag / AgCl下,在0.26〜Ag / AgCl下,在0.26〜Ag / AgCl,在0.56〜V的较小阴性区域中,观察到宏细胞的减少。全氟化导致电子吸收光谱中的Q波段(最低ππ*过渡)的低变色偏移,从633Ω·nm为[ZnPA]至623〜623Δnm,分别增加荧光量子产量фffrom0.12至0.19( THF中的值)。 [ZnPAF40]具有比[ZnPA](Фδ= 0.30)的单线氧(Фδ= 0.60)产生更高的效率(Фδ= 0.37)(在THF中)。根据CH 2 Cl 2-CF 3核培养基中的分光光度滴定研究,引入40氟原子几乎减少了卟啉宏细胞的碱度几乎达到了3个数量级。

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