首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Theoretical studies on heats of formation, group interactions, and bond dissociation energies in neopentyl difluoroamino compounds
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Theoretical studies on heats of formation, group interactions, and bond dissociation energies in neopentyl difluoroamino compounds

机译:新戊基二氟氨基化合物中形成热,基团相互作用和键解离能的理论研究

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The heats of formation (HOFs) were calculated for a series of neopentyl difluoroamino compounds by using density functional theory (DFT) method with 6-311G** basis set, as well as semi-empirical methods. In the isodesmic reactions designed for the computation of HOF, the neopentane was chosen as a reference compound. The HOFs increase smoothly as -ONO2 groups being replaced by -NF2 and -NO2. However, HOFs increase dramatically as -ONO2 groups being replaced by -N(NO2)CH3 and -N-3 groups. The variations of HOFs are different with different substituents. The semi-empirical MO (MNDO, AM1, and PM3) methods did not produce accurate and reliable results for the HOFs of the title compounds. The relative stability of the title compounds was evaluated based on the calculated HOFs. the energy gaps between the frontier orbitals and the bond order of C-R bond (C-NF2, C-ONO2, C-NO2 and C-N-3). The magnitudes of intramolecular group interactions were predicted through the disproportionation energies. Thermal stabilities were evaluated via bond dissociation energies (BDE) at the B3LYP/6-311G** level. These results provide basic information for the molecular design of novel high energetic density materials. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过使用密度函数理论(DFT)方法和6-311G **基组,以及半经验方法,计算了一系列新戊基二氟氨基化合物的形成热(HOF)。在为计算HOF而设计的等渗反应中,新戊烷被选作参考化合物。当-ONO2基团被-NF2和-NO2取代时,HOF平稳增加。但是,随着-ONO2基团被-N(NO2)CH3和-N-3基团取代,HOF急剧增加。 HOF的变化随取代基的不同而不同。半经验MO(MNDO,AM1和PM3)方法无法为标题化合物的HOF产生准确可靠的结果。基于计算的HOF评估标题化合物的相对稳定性。边界轨道和C-R键(C-NF2,C-ONO2,C-NO2和C-N-3)的键序之间的能隙。分子内基团相互作用的大小是通过歧化能预测的。通过B3LYP / 6-311G **水平的键离解能(BDE)评估热稳定性。这些结果为新型高能密度材料的分子设计提供了基础信息。 (c)2006 Elsevier B.V.保留所有权利。

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