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生物碱的光氧化:玫瑰红孟加拉敏化单重态氧产生的可观量子产率增强。

Photooxidation of alkaloids: considerable quantum yield enhancement by rose bengal-sensitized singlet molecular oxygen generation.

机构信息

Max-Planck-Institut für Bioanorganische Chemie, Mülheim an der Ruhr, Germany.

出版信息

Photochem Photobiol. 2011 Nov-Dec;87(6):1315-20. doi: 10.1111/j.1751-1097.2011.00994.x. Epub 2011 Oct 3.

Abstract

The photooxidation of sanguinarine, coralyne and berberine was studied in oxygenated alkaline methanol solutions. Rose bengal as photosensitizer significantly accelerates the process, indicating the importance of singlet molecular oxygen in the reaction mechanism. The quantum yield of sensitized oxidation was found to increase significantly with pH and reaches 0.4 for berberine at pH 13.8. The direct oxidation of alkaloids is less efficient, the quantum yield does not exceed 0.01 even in oxygen-saturated solutions. The photoinduced electron ejection does not play a role in the oxidation. The uncharged pseudobase forms, which are present in alkaline medium, are oxidized much more easily than the alkaloid cations.

摘要

在含氧堿性甲醇溶液中研究了血根堿、珊瑚菜堿和小檗堿的光氧化反应。吖啶鎓作为光敏剂显著加速了该过程,表明单重态氧在反应机制中的重要性。敏化氧化的量子产率被发现随 pH 值显著增加,在 pH 13.8 时达到 0.4,对于小檗堿。堿的直接氧化效率较低,即使在氧饱和溶液中,量子产率也不超过 0.01。光诱导的电子发射在氧化过程中不起作用。在堿性介质中存在的不带电荷的假堿形式比堿阳离子更容易被氧化。

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