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Intramolecular Hydrogen Bond in 3-Imino-Propenylamine Isomers: AIM and NBO Studies

机译:3-氨基丙烯胺异构体中的分子内氢键:AIM和NBO研究

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The molecular structure and intramolecular hydrogen bond energy of 18 conformers of 3-imino-propenyl-amine were investigated at MP2 and B3LYP levels of theory using the standard 6-311++G** basis set. The atom in molecules or AIM theory of Bader, which is based on the topological properties of the electron density (rho), was used additionally and the natural bond orbital (NBO) analysis was also carried out. Furthermore calculations for all possible conformations of 3-imino-propenyl-amin in water solution were also carried out at B3LYP/6-311++G** and MP2/6-311++G** levels of theory. The calculated geometrical parameters and conformational analyses in gas phase and water solution show that the imine-amine conformers of this compound are more stable than the other conformers. B3LYP method predicts the IMA-1 as global minimum. This stability is mainly due to the formation of a strong N-H center dot center dot center dot N intramolecular hydrogen bond, which is assisted by pi-electrons resonance, and this pi-electrons are established by NH2 functional group. Hydrogen bond energies for all conformers of 3-imino-propenyl-amine were obtained from the related rotamers methods.
机译:在MP2和B3LYP的理论水平上,使用标准的6-311 ++ G **基集研究了18种构象的3-亚氨基丙烯基胺的分子结构和分子内氢键能。另外,还使用了基于电子密度(rho)拓扑特性的分子中原子或Bader的AIM理论,并进行了自然键轨道(NBO)分析。此外,还以B3LYP / 6-311 ++ G **和MP2 / 6-311 ++ G **的理论水平对水溶液中3-亚氨基-丙烯基-氨胺的所有可能构象进行了计算。在气相和水溶液中计算的几何参数和构象分析表明,该化合物的亚胺-胺构象比其他构象更稳定。 B3LYP方法预测IMA-1为全局最小值。该稳定性主要归因于形成强大的N-H中心点中心点中心点N分子内氢键,其通过π电子共振辅助,并且该π电子由NH 2官能团建立。从相关的旋转异构体方法获得了3-亚氨基-丙烯基-胺的所有构象异构体的氢键能。

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