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A Molecular Electron Density Theory Study of the Synthesis of Spirobipyrazolines through the Domino Reaction of Nitrilimines with Allenoates

机译:硝胺与脲基甲酸酯多米诺反应合成螺环吡唑啉的分子电子密度理论研究

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摘要

The reaction of diphenyl nitrilimine (NI) with methyl 1-methyl-allenoate yielding a spirobipyrazoline has been studied within molecular electron density theory (MEDT) at the MPWB1K/6-311G(d) computational level in dichloromethane. This reaction is a domino process that comprises two consecutive 32CA reactions with the formation of a pyrazoline intermediate. Analysis of the relative Gibbs free energies indicates that both 32CA reactions are highly regioselective, the first one being also completely chemoselective, in agreement with the experimental outcomes. The geometries of the TSs indicate that they are associated to asynchronous bond formation processes in which the shorter distance involves the C1 carbon of diphenyl NI. Despite the zwitterionic structure of diphenyl NI, the appearance of a structure at the beginning of the reaction path, with a very low energy cost, suggests that the 32CA reaction between diphenyl NI, a strong nucleophile, and the allenoate, a moderate electrophile, should be mechanistically considered on the borderline between and 32CA reactions, somewhat closer to the latter.
机译:已在分子电子密度理论(MEDT)中以MPWB1K / 6-311G(d)的计算水平在二氯甲烷中研究了二苯基亚硝酸亚胺(NI)与1-甲基-烯丙酸甲酯生成螺并吡唑啉的反应。此反应是一个多米诺骨牌过程,包括两个连续的32CA反应,并形成吡唑啉中间体。对相对吉布斯自由能的分析表明,两种32CA反应均具有高度的区域选择性,第一个反应也具有完全的化学选择性,与实验结果一致。 TS的几何形状表明它们与异步键形成过程有关,在异步键形成过程中,较短的距离涉及二苯基NI的C1碳。尽管联苯NI的两性离子结构,但在反应路径开始时出现结构且具有非常低的能源成本,这表明应该在联苯NI(强亲核试剂)和脲基酸酯(中等亲电试剂)之间进行32CA反应。从机械角度考虑与32CA反应之间的界限,与后者之间的距离稍近一些。

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