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首页> 外文期刊>Molecular physics >Assessment in the competition between steric and electronic effects in the elimination kinetic of hydrogen in 1,4-cyclohexadienes in the gas phase. Quantum chemical theory calculations
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Assessment in the competition between steric and electronic effects in the elimination kinetic of hydrogen in 1,4-cyclohexadienes in the gas phase. Quantum chemical theory calculations

机译:评估在气相中1,4-环己二烯中氢消除动力学的空间效应和电子效应之间的竞争。量子化学理论计算

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The mechanisms of gas-phase thermal decomposition of alkyl-substituted cyclohexadienes were studied by the means of quantum chemical calculations with theory levels Moller-Plesset pertubation theory (MP2) and density functional theory (DFT) (B3LYP, MPW1PW91, PBEPBE, omega B97XD, CAM-B3LYP, M06, and M062X) with 6-31G(d,p), 6-31++G(d,p) basis sets. The examination of the reaction pathways of each substrate demonstrated a molecular mechanism through six-membered cyclic boat-like transition state (TS) structure. An alkyl group substituent causes a detrimental effect on the reaction rate, compared to the parent compound 1,4-cyclohexadiene; however, the reaction was favoured in the case of 3,6-dimethyl substitution. The 3,6-dimethyl-1,4-cyclohexadiene compound has activation energy 11.2 kJ/mol lower than the reference compound, which overcomes the effect of the most negative entropy of activation in the series. The effects of alkyl substituents in these reactions suggest a complex combination of electronic and steric influence. These reactions are characterised as highly synchronous concerted, with small predominance of C-H bond breaking in the TS.
机译:通过理论级Moller-Plesset渗透理论(MP2)和密度泛函理论(DFT)(B3LYP,MPW1PW91,PBEPBE,omega B97XD)的量子化学计算研究了烷基取代的环己二烯的气相热分解机理CAM-B3LYP,M06和M062X)具有6-31G(d,p),6-31 ++ G(d,p)基础集。每种底物的反应路径的检查表明了通过六元环状舟状过渡态(TS)结构的分子机制。与母体化合物1,4-环己二烯相比,烷基取代基对反应速率有不利影响。然而,在3,6-二甲基取代的情况下该反应是有利的。 3,6-二甲基-1,4-环己二烯化合物的活化能比参考化合物低11.2 kJ / mol,克服了系列中活化度最大的负熵的影响。在这些反应中烷基取代基的作用表明电子和空间影响的复杂结合。这些反应的特征是高度同步一致,TS中C-H键断裂的优势很小。

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