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首页> 外文期刊>Research on Chemical Intermediates >Competing processes in the photochemistry of picolines and their N-methyl salts: photoinduced charge transfer, phototransposition and photohydration
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Competing processes in the photochemistry of picolines and their N-methyl salts: photoinduced charge transfer, phototransposition and photohydration

机译:野鸭光化学中的竞争过程及其N-甲基盐:光抑制电荷转移,光电散退和光水

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摘要

Photochemical reactivity of a series of picolines and their N-methylated salts has been investigated by preparative irradiations and UV-vis spectroscopy. Understanding competing photochemical processes and knowledge of their relative efficiencies is important in the application of pyridines as photocages or in the synthesis of complex polycycles. Contrary to previous reports for the gas phase, picolines are not reactive in the phototransposition, presumably due to protonation of the pyridine nitrogen in the excited state. Deuterium exchange was observed upon irradiation in CD3CN-D2O, but it was rationalized by photoionization and radical formation. On the other hand, N-methylated picoline salts are not protonated upon excitation. They undergo photohydration and phototransposition (Phi(R) = 0.01-0.06). Upon irradiation of iodides, azabicyclic [3.1.0] hydration products were obtained. A difference in product distribution was observed between iodides and perchlorates, due to photoelimination of perchloric acid leading to the thermal aziridine ring opening. Moreover, excitation of iodide derivatives gives rise to change transfer transition forming iodide radicals that eventually give I-3(-) with the quantum efficiency Phi(R) = 0.015-0.02.
机译:通过制备辐照和UV-Vis光谱研究了一系列尿素的光化学反应性及其N-甲基化盐。理解竞争光化学过程和对其相对效率的了解在吡啶吡啶作为复合物或合成复合多环的合成中是重要的。与先前的气相报告相反,米罗孔在光电驱动中没有反应,可能是由于吡啶氮的质子化在激发态中。在CD3CN-D2O中照射时观察到氘交换,但通过光离子化和自由基形成合理化。另一方面,N-甲基化的巯基盐不会在激发时质子化。它们经历光水和光电致命(PHI(R)= 0.01-0.06)。在碘化物照射后,获得氮杂环状[3.1.0]水合产物。由于高氯酸的光束导致热氮化萘齐齐开口的光束,观察到产物分布的差异。此外,碘化物衍生物的激发产生了形成碘化物基团的转化转变,其最终通过量子效率PHI(R)= 0.015-0.02。

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