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氢从环状胺中提取的cumyloxyl 和苯氧自由基。立体电子效应和底物/自由基氢键的作用。

Hydrogen abstraction from cyclic amines by the cumyloxyl and benzyloxyl radicals. The role of stereoelectronic effects and of substrate/radical hydrogen bonding.

机构信息

Dipartimento di Scienze e Tecnologie Chimiche, Università Tor Vergata, Via della Ricerca Scientifica, 1 I-00133 Rome, Italy.

出版信息

J Org Chem. 2012 Oct 5;77(19):8556-61. doi: 10.1021/jo3015352. Epub 2012 Sep 18.

Abstract

A kinetic study on the hydrogen abstraction reactions from cyclic amines and diamines (pyrrolidines, piperidines, morpholines, and piperazines) by the cumyloxyl (CumO(•)) and benzyloxyl (BnO(•)) radicals was carried out. The reactions with CumO(•) were described in all cases as direct hydrogen abstractions. The differences in the hydrogen abstraction rate constant (k(H)) were explained in terms of the different number of abstractable hydrogen atoms, the operation of stereoelectronic effects, and, with the morpholines, on the basis of polar effects. Significantly higher k(H) values were measured for the reactions of the amines with BnO(•). This behavior was explained on the basis of a mechanism that proceeds through the rate-determining formation of a hydrogen bonded pre-reaction complex between the radical α-C-H and the nitrogen lone pair followed by hydrogen abstraction within the complex. A decrease in k(H) was observed going from secondary to tertiary amines and, with tertiary amines, on increasing steric hindrance at nitrogen, pointing toward the important role of steric and electronic effects on pre-reaction complex formation. These results expand previous findings contributing to a detailed mechanistic description of the reactions of alkoxyl radicals with amines, showing that structural effects in both the substrate and the radical can play a dramatic role and providing new information on the role of substrate/radical interactions on these processes.

摘要

环胺(吡咯烷、哌啶、吗啉和哌嗪)和CumO(•)(叔丁基过氧自由基)、BnO(•)(苄基过氧自由基)的氢提取反应的动力学研究。在所有情况下,CumO(•)与反应的描述都是直接的氢提取。氢提取速率常数(k(H))的差异可以用可提取的氢原子的不同数量、立体电子效应的作用来解释,对于吗啉,还可以根据极性效应来解释。胺与 BnO(•)的反应的 k(H)值明显更高。这种行为可以根据一种机制来解释,该机制通过自由基α-C-H 和氮孤对之间的氢键预反应络合物的速率决定形成,然后在络合物内进行氢提取。从仲胺到叔胺,k(H)值下降,对于叔胺,氮上的空间位阻增大,这表明空间位阻和电子效应在预反应络合物形成中起着重要作用。这些结果扩展了先前关于烷氧基自由基与胺反应的详细机理描述的发现,表明底物和自由基中的结构效应都可以发挥重要作用,并提供了关于这些过程中底物/自由基相互作用作用的新信息。

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