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首页> 外文期刊>Angewandte Chemie >Gas-Phase Synthesis of the Elusive Cyclooctatetraenyl Radical (C8H7) via Triplet Aromatic Cyclooctatetraene (C8H8) and Non-Aromatic Cyclooctatriene (C8H8) Intermediates
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Gas-Phase Synthesis of the Elusive Cyclooctatetraenyl Radical (C8H7) via Triplet Aromatic Cyclooctatetraene (C8H8) and Non-Aromatic Cyclooctatriene (C8H8) Intermediates

机译:通过三重族芳族环偶乙烯(C8H8)和非芳族环偶二烯(C8H8)中间体的气相合成难以使性环辛酸四烯基

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摘要

The 1,2,4,7-cyclooctatetraenyl radical (C8H7) has been synthesized for the very first time via the bimolecular gas-phase reaction of ground-state carbon atoms with 1,3,5-cycloheptatriene (C7H8) on the triplet surface under single-collision conditions. The barrier-less route to the cyclic 1,2,4,7-cyclooctatetraenyl radical accesses exotic reaction intermediates on the triplet surface, which cannot be synthesized via classical organic chemistry methods: the triplet non-aromatic 2,4,6-cyclooctatriene (C8H8) and the triplet aromatic 1,3,5,7-cyclooctatetraene (C8H8). Our approach provides a clean gas-phase synthesis of this hitherto elusive cyclic radical species 1,2,4,7-cyclooctatetraenyl via a single-collision event and opens up a versatile, unconventional path to access this previously largely obscure class of cyclooctatetraenyl radicals, which have been impossible to access through classical synthetic methods.
机译:通过在三重态表面上具有1,3,5-环庚基硫代乙烯(C7H8)的基状碳原子的双分子气相反应,首次合成了1,2,4,7-环偶乙烯基自由基(C8H7)。 在一次碰撞条件下。 循环1,2,4,7-环偶乙烯基自由基的屏障途径进入三重态表面上的异国反应中间体,其不能通过经典的有机化学方法合成:三重态非芳族2,4,6-环偶乙烯( C8H8)和三联芳族1,3,5,7-环辛法(C8H8)。 我们的方法通过单一碰撞事件提供了这种迄今难以使循环自由基物种1,2,7,7-环偶二烯基的清洁气相合成,并打开了一种通用的,无传统的路径,以进入此前主要模糊的环孢乙酸四烯基自由基, 这一点是不可能通过经典的合成方法访问。

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