School of Chemistry and Material Science, Shanxi Normal University, 041004, Linfen, China.
J Mol Model. 2013 Feb;19(2):571-80. doi: 10.1007/s00894-012-1582-1. Epub 2012 Sep 9.
Based on fully optimized geometric structures at DFT-B3LYP/6-311G** level, we calculated electronic structures, heats of formation, strain energies, bond dissociation energies and detonation performance (detonation velocity and detonation pressure) for a series of polynitraminecubanes. Our results have shown that energy gaps of cubane derivatives are much higher than that of triaminotrinitrobenzene (TATB), which means that cubane derivatives may be more sensitive than TATB. Polynitraminecubanes have high and positive heats of formation, and a good linear relationship between heats of formation and nitramine group numbers was presented. As the number of nitramine groups in the molecule increases, the enthalpies of combustion values are increasingly negative, but the specific enthalpy of combustion values decreases. It is found that all cubane derivatives have high strain energies, which are affected by the number and position of nitramine group. The calculated bond dissociation energies of C-NHNO(2) and C-C bond show that the C-C bond should be the trigger bond in the pyrolysis process. It is found that detonation velocity (D), detonation pressure (P) and molecule density (ρ) have good linear relationship with substituented group numbers. Heptanitraminecubane and octanitraminecubane have good detonation performance over 1,3,5,7-tetranitro-1,3,5,7-tetraazacyclooctane (HMX), and they can be regarded as potential candidates of high energy density compounds (HEDCs). The results have not only shown that these compounds may be used as HEDCs, but also provide some useful information for further investigation.
基于完全优化的 DFT-B3LYP/6-311G**几何结构,我们计算了一系列多硝基金刚烷的电子结构、生成焓、应变能、键离解能和爆炸性能(爆速和爆压)。我们的结果表明,金刚烷衍生物的能隙远高于三氨基三硝基苯(TATB),这意味着金刚烷衍生物可能比 TATB 更敏感。多硝基金刚烷具有较高的生成焓和正值,且生成焓与硝胺基团数量之间呈现良好的线性关系。随着分子中硝胺基团数量的增加,燃烧焓值逐渐变为负值,但比燃烧焓值逐渐减小。发现所有的金刚烷衍生物都具有较高的应变能,这受硝胺基团的数量和位置的影响。计算得到的 C-NHNO(2)和 C-C 键的键离解能表明,C-C 键应该是热解过程中的引发键。发现爆速(D)、爆压(P)和分子密度(ρ)与取代基数量呈良好的线性关系。庚硝基金刚烷和辛硝基金刚烷的爆炸性能优于 1,3,5,7-四硝基-1,3,5,7-四氮杂环辛烷(HMX),它们可作为高能量密度化合物(HEDC)的潜在候选物。这些结果不仅表明这些化合物可用作 HEDC,还为进一步研究提供了一些有用的信息。