Zhang Cong, Zhao Feng-Qi, Xu Si-Yu, Ju Xue-Hai
Key Laboratory of Soft Chemistry and Functional Materials of MOE, School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, People's Republic of China.
Laboratory of Science and Technology on Combustion and Explosion, Xi'an Modern Chemistry Research Institute, Xi'an, 710065, People's Republic of China.
J Mol Model. 2018 Oct 2;24(10):304. doi: 10.1007/s00894-018-3835-0.
We designed three novel cage energetic anions by introducing ionic bridges containing NΘ, N(OΘ) and N(NΘNO) into cis-2,4,6,8-tetranitro-1H,5H-2,4,6,8- tetraazabicyclo[3.3.0] octane (bicyclo-HMX or BCMHX). The properties of 21 energetic salts, based on cage anions and ammonium-based cations, were studied by density functional theory (DFT) and volume-based thermodynamics (VBT) calculations. Compared to the parent nonionic BCHMX, most title salts have lower predicted impact sensitivities, higher predicted densities, larger predicted heats of formation (HOFs) and better predicted detonation properties. In particular, 11 energetic salts not only exhibit excellent predicted energetic properties, superior to 2,4,6,8,10,12-hexanitrohexaazaisowurtzitane (CL-20), but also have lower predicted sensitivity than CL-20. The best salt had a predicted detonation velocity of 10.06 km s, a predicted detonation pressure of 48.54 GPa and a predicted sensitivity (h) of 23.99 cm. By introducing ionic bridges into highly nitrated rings, or modifying the original bridge with ionic bridges, some highly nitrated cage compounds with both excellent performance and low sensitivity can be developed strategically. Graphical abstract Heats of detonation, detonation velocities, and detonation pressures of salts derived from bicyclo-HMX.
我们通过将含有NΘ、N(OΘ)和N(NΘNO)的离子桥引入顺式-2,4,6,8-四硝基-1H,5H-2,4,6,8-四氮杂双环[3.3.0]辛烷(双环-HMX或BCMHX)中,设计了三种新型笼状含能阴离子。基于笼状阴离子和铵基阳离子的21种含能盐的性质,通过密度泛函理论(DFT)和基于体积的热力学(VBT)计算进行了研究。与母体非离子型BCHMX相比,大多数标题盐具有更低的预测撞击感度、更高的预测密度、更大的预测生成热(HOF)和更好的预测爆轰性能。特别是,11种含能盐不仅表现出优异的预测含能性能,优于2,4,6,8,10,12-六硝基六氮杂异伍兹烷(CL-20),而且预测感度比CL-20更低。最佳的盐预测爆速为10.06 km s,预测爆压为48.54 GPa,预测感度(h)为23.99 cm。通过将离子桥引入高度硝化的环中,或用离子桥修饰原始桥,可以战略性地开发一些兼具优异性能和低感度的高度硝化笼状化合物。图形摘要 双环-HMX衍生盐的爆轰热、爆速和爆压。