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Photoinduced Oxygen-Atom Transfer from NO_2 to Alkenes, Alkynes, and Amines in Low-Temperature Argon Matrices

机译:低温氩气基质中光诱导的氧原子从NO_2转移到烯烃,炔烃和胺

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The cryogenic-matrix technique is ideally suited for the study of photoinitiated bimolecular chemistry since the reactants of interest can be brought together as sustained pairs, and reaction can be followed in complete absence of diffusional processes that complicate elucidation of the reaction path in liquid-solution or gas phase. Photolysis wavelength dependence of the chemistry, both in terms of quantum efficiency and the course the reaction takes, can conveniently be determined by laser initiation in an inert, solid environment. Particularly useful for uncovering reaction pathways is the possibility to trap chemical intermediates. These advantages are fully exploited in the studies on visible-light induced photooxidation of alkenes, dienes, alkynes, and amines by N0_2.
机译:低温基质技术非常适合用于光引发的双分子化学研究,因为目标反应物可以以连续对的形式聚集在一起,并且可以在完全不存在扩散过程的情况下进行反应,而扩散过程使液体溶液中的反应路径难以阐明或气相。化学反应的光解波长依赖性,无论是在量子效率还是反应过程上,都可以通过在惰性,固态环境中进行激光引发来方便地确定。对于发现反应路径特别有用的是捕获化学中间体的可能性。这些优点在N0_2对可见光诱导的烯烃,二烯,炔烃和胺的光氧化研究中得到了充分利用。

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