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基于硝氨基[1,3,5]三嗪的胍鎓盐的氢键相互作用和性质的理论研究:DFT-D 和 QTAIM 研究。

Hydrogen-bonding interactions and properties of energetic nitroamino[1,3,5]triazine-based guanidinium salts: DFT-D and QTAIM studies.

机构信息

Department of Chemistry, Institute of Molecular and Materials Computation, Nanjing University of Science and Technology, Nanjing 210094, PR China.

出版信息

Chem Asian J. 2012 Nov;7(11):2577-91. doi: 10.1002/asia.201200450. Epub 2012 Sep 3.

Abstract

The intramolecular hydrogen-bonding interactions and properties of a series of nitroamino[1,3,5]triazine-based guanidinium salts were studied by using the dispersion-corrected density functional theory method (DFT-D). Results show that there are evident LP(N or O; LP = lone pair)→σ*(N-H) orbital interactions related to O⋅⋅⋅H-N or N⋅⋅⋅H-N hydrogen bonds. Quantum theory of atoms in molecules (QTAIM) was applied to characterize the intramolecular hydrogen bonds. For the guanidinium salts studied, the intramolecular hydrogen bonds are associated with a seven- or eight-membered pseudo-ring. The guanylurea cation is more helpful for improving the thermal stabilities of the ionic salts than other guanidinium cations. The contributions of different substituents on the triazine ring to the thermal stability increase in the order of -NO(2)<-NF(2)<-N(3) (-ONO(2))<-NH(2). Energy decomposition analysis shows that the salts are stable owing to electrostatic and orbital interactions between the ions, whereas the dispersion energy has very small contributions. Moreover, the salts exhibit relatively high densities in the range of 1.62-1.89 g cm(-3). The detonation velocities and pressures lie in the range of 6.49-8.85 km s(-1) and 17.79-35.59 GPa, respectively, which makes most of them promising explosives.

摘要

采用含色散校正的密度泛函理论(DFT-D)方法研究了一系列硝基氨基[1,3,5]三嗪基胍鎓盐的分子内氢键相互作用和性质。结果表明,存在与 O···H-N 或 N···H-N 氢键相关的明显 LP(N 或 O;LP = 孤对)→σ*(N-H)轨道相互作用。原子在分子中的量子理论(QTAIM)被应用于表征分子内氢键。在所研究的胍鎓盐中,分子内氢键与七元或八元拟环有关。与其他胍鎓阳离子相比,胍脲阳离子更有助于提高离子盐的热稳定性。三嗪环上不同取代基对热稳定性的贡献增加顺序为 -NO(2)<-NF(2)<-N(3)(-ONO(2))<-NH(2)。能量分解分析表明,由于离子之间的静电和轨道相互作用,这些盐是稳定的,而色散能的贡献非常小。此外,这些盐具有相对较高的密度范围在 1.62-1.89 g cm(-3)之间。爆速和压力范围分别为 6.49-8.85 km s(-1)和 17.79-35.59 GPa,这使得它们大多数都是有前途的炸药。

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