Adjieufack Abel Idrice, Nana Cyrille Nouhou, Ketcha-Mbadcam Joseph, Mbouombouo Ndassa Ibrahim, Andrés Juan, Oliva Mónica, Safont Vicent Sixte
Physical and Theoretical Chemistry Laboratory and Computational Chemistry Laboratory, High Teacher Training College, University of Yaoundé 1, P.O. Box 47 Yaoundé, Cameroon.
Physical and Theoretical Chemistry Laboratory, University of Yaoundé 1, P. O. Box 812 Yaoundé, Cameroon.
ACS Omega. 2020 Aug 24;5(35):22215-22225. doi: 10.1021/acsomega.0c02371. eCollection 2020 Sep 8.
This study is focused on describing the molecular mechanism beyond the molecular picture provided by the evolution of molecular orbitals, valence bond structures along the reaction progress, or conceptual density functional theory. Using bonding evolution theory (BET) analysis, we have deciphered the mechanism of the 1,3-dipolar rearrangement between acetonitrile oxide and (1,2,4)-2-cyano-7-oxabicyclo[2.2.1]hept-5-en-2-yl acetate derivatives. The BET study revealed that the formation of the C-C bond takes place a usual sharing model before the O-C one that is also formed in the halogenated species through a not very usual sharing model. The mechanism includes depopulation of the electron density at the N-C triple bond and creation of the V(N) and V(C) monosynaptic basins, depopulation of the former C-C double bond with the creation of V(C,C) basins, and final formation of the V(O,C) basin associated with the O-C bond. The topological changes along the reaction pathway take place in a highly synchronous way. BET provides a convenient quantitative method for deriving curly arrows and electron flow representation to unravel molecular mechanisms.
本研究聚焦于描述分子轨道演化、反应进程中的价键结构或概念密度泛函理论所提供分子图景之外的分子机制。通过键演化理论(BET)分析,我们已解读了乙腈氧化物与(1,2,4)-2-氰基-7-氧杂双环[2.2.1]庚-5-烯-2-基乙酸酯衍生物之间1,3-偶极重排的机制。BET研究表明,C-C键的形成通过一种常见的共享模型发生在O-C键之前,而O-C键在卤代物种中通过一种不太常见的共享模型形成。该机制包括N-C三键处电子密度的减少以及V(N)和V(C)单突触盆地的产生,前一个C-C双键的电子密度减少并产生V(C,C)盆地,以及与O-C键相关的V(O,C)盆地的最终形成。反应途径上的拓扑变化以高度同步的方式发生。BET为推导弯箭头和电子流表示以揭示分子机制提供了一种便捷的定量方法。