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Competing Simple Cleavage Reactions:The Elimination of Alkyl Radicals from Amine Radical Cations

机译:竞争简单的裂解反应:从胺基自由基阳离子消除烷基自由基

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摘要

Two different alkyl radicals can be expelled when unsymmetrical aliphatic amine radical cations undergo C-C bond cleavage.The branching ratio is strongly dependent on the internal energy of the reactant,even when the competition involves loss of closely related alkyl radicals.In mass spectrometers,the rate of loss of the smaller radical (excepting methyl) always exceeds the rate of loss of the larger close to threshold.The preference is reversed for the more highly energized ions that react in the ion source,demonstrating that the rate of loss of the larger radical rises much more rapidly with increasing internal energy than does the rate of loss of the smaller radical.This result is not easily reconciled with a simple RRKM model,given the expected strong resemblance between the transition states involved,whereas it agrees well with a description based on variational transition state theory.The heats of formation of the products determined with the G3 composite ab initio method show that loss of the smaller radical is without exception the more favorable reaction.The relative rates of the competing C-C bond cleavage reactions of the metastable ions vary with the number of degrees of freedom of the reactant,with the critical energy of the reaction,and with the difference between the heats of formation of the products.The presence of intermediate energy barriers when cleavage occurs at a branching point can give rise to variations in relative rates that are not easily interpreted.
机译:当不对称脂族胺自由基阳离子进行CC键裂解时,两个不同的烷基自由基会被排出。支化比强烈依赖于反应物的内能,即使竞争涉及到紧密相关的烷基自由基的损失。在质谱仪中,速率较小自由基的损失(甲基除外)始终超过接近阈值的较大自由基的损失速率。对于在离子源中反应的能量更高的离子,该偏好相反,这表明较大自由基的损失速率内部能量的增加比小自由基的损失速率更快地增长。鉴于所涉及的过渡态之间的预期强烈相似性,因此这个结果不容易与简单的RRKM模型相吻合,但它与基于G3复合从头算方法确定的产物形成热表明亚稳态离子的竞争性CC键裂解反应的相对速率随反应物的自由度数,反应的临界能和当在分支点发生裂解时,中间能垒的存在会引起相对速率的变化,而这是不容易理解的。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第17期|p.6466-6475|共10页
  • 作者单位

    Contribution from the Department of Chemistry,University of Copenhagen,Universitetsparken 5,DK-2100 Copenhagen 0,Denmark;

    Contribution from the Department of Chemistry,University of Copenhagen,Universitetsparken 5,DK-2100 Copenhagen 0,Denmark;

    Contribution from the Department of Chemistry,University of Copenhagen,Universitetsparken 5,DK-2100 Copenhagen 0,Denmark;

    Contribution from the Department of Chemistry,University of Copenhagen,Universitetsparken 5,DK-2100 Copenhagen 0,Denmark;

    Contribution from the Department of Chemistry,University of Copenhagen,Universitetsparken 5,DK-2100 Copenhagen 0,Denmark;

    Contribution from the Department of Chemistry,University of Copenhagen,Universitetsparken 5,DK-2100 Copenhagen 0,Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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