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首页> 外文期刊>Journal of sulfur chemistry >Understanding the molecular mechanism of thio-Claisen rearrangement of allyl phenyl sulfide and allyl vinyl sulfide using bonding evolution theory coupled with NCI analysis
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Understanding the molecular mechanism of thio-Claisen rearrangement of allyl phenyl sulfide and allyl vinyl sulfide using bonding evolution theory coupled with NCI analysis

机译:用NCI分析,使用粘合演化理论了解烯丙基苯硫醚和烯丙基乙烯酰硫醚的硫胺重排的分子机制

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摘要

A joint application of bonding evolution theory (BET) and non-covalent interaction (NCI) analysis provides a powerful tool to explain the molecular mechanism of organic reactions. Thio-Claisen rearrangements (TCR) of allyl phenyl sulfide and allyl vinyl sulfide have been studied energetically using the MPWB1K/6-311G(2d,d,p), M06-2x/6-311G(2d,d,p) and the complete basis set model chemistry CBS-QB3 to predict activation barriers and thermodynamic parameters. Loss of aromaticity within the benzene ring along the TCR of allyl phenyl sulfide leads to a higher activation barrier and its endergonicity (endothermicity) nature, while TCR of allyl vinyl sulfide is an exergonic (exothermic) rearrangement with lower activation barrier. The molecular mechanisms are described by using MPWB1K/6-311G(2d,d,p) wavefunctions and energy profiles. The TCR of allyl phenyl sulfide and allyl vinyl sulfide can be described by the sequence of catastrophes 6-[(CC)-C-dagger]F[(FFF)-F-dagger-F-dagger](TS)[(CC)-C-dagger]C-dagger-0 and 8-(CCC)-C-dagger[(FFF)-F-dagger-F-dagger](FCC dagger)-F-TS-0, respectively, by the following chemical events: (a) homolytic bond breaking of C-S single bond and formation of pseudoradical centers on the atoms; (b) annihilation of the pseudoradical centers and reorganization in covalent bonds; (c) appearance of the pseudoradical centers on the terminal carbon atoms; (d) formation of new C-C single bond by the C-to-C coupling of pseudoradical centers when the TS of the reaction is reached and left behind. NCI isosurface appears in the region of broken C-S bond and forming C-C bond where the monosynaptic basins were localized.
机译:粘合演化理论(BET)和非共价相互作用(NCI)分析的联合应用提供了解释有机反应的分子机制的强大工具。烯丙基苯硫醚和烯丙基硫醚的硫齐酮重排(TCR)已经使用MPWB1K / 6-311g(2D,D,P),M06-2X / 6-311g(2D,D,P)和烯丙烯酰硫醚完整的基础设定模型化学CBS-QB3,以预测激活屏障和热力学参数。沿烯丙基苯硫化物的TCR在苯环中丧失苯环芳香性导致较高的活化屏障及其抗结构性(吸热性)性质,而TCR的烯丙基乙烯酰硫醚是具有较低活化屏障的Exergony(放热)重排。通过使用MPWB1K / 6-311G(2D,D,P)波力和能量轮廓来描述分子机制。烯丙基硫化物和烯丙基乙烯酰硫醚的TCR可以通过灾难6 - [(CC)-c-匕首] F [(FFF)-F-匕首-F- F型匕首](TS)[(CC) -c-匕首] C-DAGGER-0和8-(CCC)-C-匕首[(FFF)-F-DGREG-F-匕首](FCC匕首)分别通过以下化学品分别为-F-TS-0事件:(a)CS单键的均解粘合和原子上伪粘土的形成; (b)共价债券的伪症中心和重组的湮灭; (c)在终端碳原子上的伪宗地的出现; (d)当达到反应的TS时,通过纯化中心的C-C-C耦合形成新的C-C单键。 NCI Isosurface出现在破碎的C-S键和形成C-C键,其中单腹盆地局部化。

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