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首页> 外文期刊>International Journal of Quantum Chemistry >Do one-step mechanisms always involve simultaneous evolution of electron density? QTAIM/IQA analysis of the Curtius rearrangement
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Do one-step mechanisms always involve simultaneous evolution of electron density? QTAIM/IQA analysis of the Curtius rearrangement

机译:一步机制始终涉及电子密度的同时演变吗? Qtaim / IQA对Curtius重排的分析

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摘要

The Curtius rearrangement reaction is studied by using quantum theory of atoms in molecules (QTAIM) analysis of the electron density and the interacting quantum atoms (IQA) formalism. Although the rearrangements take place in one stage, two phases are distinguished when the rearranged atom is H: the first one corresponds to the separation of N-2, and the second one to the N-H/C-H bond rearrangement. The transition state (TS) for the reaction does not represent an intermediate between reagent and product for the migration but for the isolation of the N-2 molecule. When the migration is undergone by a fluorine atom, no electronic phases can be distinguished and the process is really concerted. As the migration happens closer to the TS, the TS is more similar to the product. The IQA analysis reveals different electron density evolutions for H and F migrations, and the scarce relevance (in terms of energy) of the point where BCPs appear or disappear.
机译:通过使用分子(Qtaim)分析的量子原子(Qtaim)分析来研究Curtius重排反应,并对电子密度和相互作用的量子原子(IQA)形式主义进行研究。 尽管重排在一个阶段发生,但是当重排原子是H时,分辨两个相位:第一个对应于N-2的分离,第二个相对于N-H / C-H键重排。 反应的过渡状态(TS)不代表试剂和迁移的产物之间的中间体,而是用于分离N-2分子。 当通过氟原子经历迁移时,可以区分电子阶段,并且该过程真正协同。 随着迁移更靠近TS,TS更类似于产品。 IQA分析揭示了H和F迁移的不同电子密度演进,以及BCP出现或消失的点的稀缺相关性(在能量方面)。

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