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A DFT Study on the Mechanism of the Annulation Reaction of Trichloronitroethylene with Aniline in the Synthesis of Quinoxalinone-N-oxides

机译:DFT研究三氯硝基乙烯与苯胺环化反应合成喹喔啉酮-N-氧化物的机理

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The new annulation reaction of trichloronitroethylene with aniline results in the formation of a quinoxalinone-N-oxide derivative. The mechanism of this one-pot annulation reaction between trichloronitroethylene (TCNiE) and anilines has been extensively investigated with B3LYP/6-31+G** methodology. Five different paths (1-5) were proposed and modeled by using this method. These paths were compared in terms of the activation energies of their rate-determining steps and in regard to the experimental findings. Paths 3 and 5, proceeding via four-membered heterocyclic rings, were found to be the most plausible paths with activation energies of 32 and 29 kcal/mol for the rate-determining steps, respectively. The effects of substituent, solvent, temperature, and computational method on these steps were also investigated. The results showed that path 5 is the most plausible mechanism for the annulation reaction of trichloronitroethylene with aniline.
机译:三氯硝基乙烯与苯胺的新环化反应导致形成喹喔啉酮-N-氧化物衍生物。使用B3LYP / 6-31 + G **方法已广泛研究了三氯硝基乙烯(TCNiE)与苯胺之间的一锅式环化反应的机理。提出了五种不同的路径(1-5)并使用此方法进行建模。比较了这些路径的速率决定步骤的活化能以及实验结果。经由四元杂环行进的路径3和5被发现是最合理的路径,其对于速率确定步骤具有32和29kcal / mol的活化能。还研究了取代基,溶剂,温度和计算方法对这些步骤的影响。结果表明,路径5是三氯硝基乙烯与苯胺环化反应的最合理的机理。

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