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Dynamics of Photoinduced Charge Separation on the Surface of Dihexydecylphosphate Vesicles

机译:磷酸二十六烷基酯囊泡表面光诱导电荷分离的动力学

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摘要

One-electron oxidation of triplet-photoexcited [5,10,15,20-tetrakis(N-methylpyridinium-4-yl)porphinato]zinc-(II) (↑(3)ZnTMPyP↑(4+)) by N-alkyl-4-cyanopyridinium (C↓(n)CP↑(+)) ions on an anionic dihexadecylphosphate (DHP) vesicle surface was studied by transient spectrophotometry. Surface rate constants for both oxidative quenching and charge recombination between the photoproducts, ZnTMPyP↑(5+) and C↓(n)CP↑(0), were insensitive to the alkyl chain length of the electron acceptor over the range n = 6-16 carbon atoms, suggesting that the rate was determined primarily by the lateral mobility of the metalloporphyrin. Interfacial reductive quenching of DHP vesicle-bound ↑(3)ZnTMPyP↑(4+) to ZnTMPy↑(3+) by dithiothreitol was 10↑(3)-fold slower than the corresponding reaction in homogeneous solution, an effect that was attributed to stabilization of the more highly charged tetracation by the anionic interface. The C↓(n)CP↑(0) radicals functioned as electron carriers to mediate photoinitiated transmembrane reduction of Co(bpy)↓(3)↑(3+) by dithiothreitol; rate constants for transmembrane C↓(n)CP↑(0) diffusion, evaluated from the quantum yields for Co(bpy)↓(3)↑(3+) reduction, were also insensitive to the alkyl chain length and had characteristic times of~3 ×10↑(-2) s. These values were nearly identical to those obtained for the same reaction measured in another photoreactive system where the C↓(n)CP(0)radicals were generated in the bulk aqueous phase, rather than on the membrane surface. The quantum efficiency for transmembrane redox was relatively low, primarily because charge recombination of the photoredox products on the vesicle surface was rapid relative to either transmembrane diffusion of C↓(n)CP↑(0) or interfacial reduction of ZnTMPyP↑(5+) by dithiothreitol.
机译:N-烷基三重激发光的[5,10,15,20-四(N-甲基吡啶-4-基)卟啉]锌-(II)(↑(3)ZnTMPyP↑(4+))的单电子氧化通过瞬时分光光度法研究了阴离子磷酸二十六烷基酯(DHP)囊泡表面上的-4-氰基吡啶鎓(C↓(n)CP↑(+))离子。光产物ZnTMPyP↑(5+)和C↓(n)CP↑(0)之间的氧化猝灭和电荷重组的表面速率常数对电子受体的烷基链长度在n = 6-范围内不敏感16个碳原子,表明该速率主要由金属卟啉的横向迁移率决定。二硫苏糖醇对DHP囊泡结合的↑(3)ZnTMPyP↑(4+)与ZnTMPy↑(3+)的界面还原淬灭速度比均相溶液中的相应反应慢10↑(3)倍,这归因于通过阴离子界面稳定更高电荷的四阳离子。 C↓(n)CP↑(0)自由基作为电子载体,介导二硫苏糖醇光引发Co(bpy)↓(3)↑(3+)的跨膜还原;从Co(bpy)↓(3)↑(3+)还原的量子产率评估的跨膜C↓(n)CP↑(0)扩散速率常数也对烷基链长度不敏感,并且特征时间为〜3×10↑(-2)s。这些值几乎与在另一个光反应系统中测量的相同反应获得的值相同,在该系统中,C↓(n)CP(0)自由基在本体水相中而不是在膜表面上生成。跨膜氧化还原的量子效率相对较低,这主要是因为相对于C↓(n)CP↑(0)的跨膜扩散或ZnTMPyP↑(5+)的界面还原,光氧化还原产物在囊泡表面的电荷重组迅速。由二硫苏糖醇。

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