Fan Xiao-Wei, Ju Xue-Hai, Xiao He-Ming
Department of Chemistry, Nanjing University of Science and Technology, Nanjing, PR China.
J Hazard Mater. 2008 Aug 15;156(1-3):342-7. doi: 10.1016/j.jhazmat.2007.12.024. Epub 2008 Feb 1.
Density functional theory calculations at the B3LYP/6-311G** level were performed to predict the heats of formation (HOFs) for three eight-membered ring compounds and four six-membered ring compounds via designed isodesmic reactions. In the isodesmic reactions designed for the computation of HOFs (CH(3)CH(2))(2)NNO(2) and piperidine were chosen as reference compounds. The HOFs for -NO(2) substituted derivations are larger than those of -NF(2) substituent groups. Thermal stability were evaluated via bond dissociation energies (BDE) at the UB3LYP/6-311G** level. As a whole, the homolysis of CNF(2) or CNO(2) bonds is the main step for bond dissociation of the title compounds. Detonation properties of seven title compounds were evaluated by using the Kamlet-Jacobs equation based on the calculated densities and HOFs. It is found that 3,3,7,7-tetrakis(difluoroamino)octahydro-1,5-dinitro-1,5-diazocine (HNFX) and 3,3,5,5-tetrakis (difluoroamino)-1-nitro piperidine (N-nitro TDFAPP), with predicted density of ca. 2.0 g/cm(3), detonation velocity (D) about 9.9 km/s, and detonation pressure (P) of 47GPa that are lager than those of HMX, are expected to be the novel candidates of high energy density materials (HEDMs). The detonation data of 1,3,3,5,7,7-hexanitro-1,5-diazacyclooctane (HNDZ) and TNBDFAPP show that they meet the requirements for HEDMs.
在B3LYP/6 - 311G水平上进行密度泛函理论计算,通过设计等键反应预测三种八元环化合物和四种六元环化合物的生成热(HOF)。在为计算HOF而设计的等键反应中,选择(CH(3)CH(2))(2)NNO(2)和哌啶作为参考化合物。-NO(2)取代衍生物的HOF大于-NF(2)取代基的HOF。通过在UB3LYP/6 - 311G水平上的键离解能(BDE)评估热稳定性。总体而言,CNF(2)或CNO(2)键的均裂是标题化合物键离解的主要步骤。基于计算的密度和HOF,使用Kamlet - Jacobs方程评估七种标题化合物的爆轰性能。发现预测密度约为2.0 g/cm(3)、爆速(D)约为9.9 km/s、爆压(P)为47GPa且大于HMX的3,3,7,7 - 四(二氟氨基)八氢 - 1,5 - 二硝基 - 1,5 - 二氮杂环辛烷(HNFX)和3,3,5,5 - 四(二氟氨基)-1 - 硝基哌啶(N - 硝基TDFAPP)有望成为新型高能量密度材料(HEDM)候选物。1,3,3,5,7,7 - 六硝基 - 1,5 - 二氮杂环辛烷(HNDZ)和TNBDFAPP的爆轰数据表明它们符合HEDM的要求。