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Theoretical study on the elimination kinetics in the gas phase of allyl methyl compounds

机译:烯丙基甲基化合物气相中消除动力学的理论研究

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The thermal decomposition kinetics of allyl methyl amine, allyl methyl ether, and allyl methyl sulfide in the gas phase has been studied theoretically using the M06-2x/aug-cc-pVTZ quantum chemical approach. The observed activation parameters are consistent with a concerted unimolecular mechanism involving a non-planar cyclic six-membered transition state. Based on the optimized ground state geometries, a natural bond orbital analysis of donor-acceptor interactions reveals that the stabilization energies corresponding to the electronic delocalization from the lone-pair (LP) non-bonding orbitals on the heteroatom to the neighboring antibonding orbitals decrease from allyl methyl amine to allyl methyl sulfide. This delocalization fairly explains the increase of occupancies of LP orbitals on the heteroatom from allyl methyl sulfide to allyl methyl amine. The results also suggest that the kinetics of the thermolysis of the studied compounds are dominated by electronic delocalization effects. Analysis of bond order, bond indices, and synchronicity parameters demonstrates that these reactions proceed through a concerted and slightly asynchronous mechanism.
机译:在理论上使用M06-2X / AUG-CC-PVTZ量子化学方法研究了气相中烯丙基甲基胺,烯丙基甲基胺,烯丙基甲基醚和烯丙基甲基硫醚的热分解动力学。观察到的激活参数与涉及非平​​面循环六元转变状态的齐齐经义的单分集机制一致。基于优化的地形几何形状,施主 - 受体相互作用的天然键轨道分析表明,对应于邻近抗抗轨道上的唯一对杂体轨道的电子临床化对应于邻近抗抗体的稳定能量下降烯丙基甲基向烯丙基甲基硫化物。该临近临床化公正地解释了将杂原子上的LP轨道占用的增加从烯丙基甲基硫化物中的酰基甲基甲基酰胺增加。结果还表明,所研究化合物的热解的动力学由电子临床化效应主导。债券秩序,债券指数和同步性参数分析表明这些反应通过齐全和略微异步机制进行。

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