Li Jing-Ru, Zhang Jian-Guo
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, China.
J Mol Model. 2021 Oct 1;27(10):308. doi: 10.1007/s00894-021-04935-6.
Density functional theory (DFT) methods were employed to design a new family of wing-like and propeller-like multi-tetrazole molecules based on the combination of N-center multi-tetrazole and various energetic groups. The optimized geometry, electronic properties, and thermodynamics were calculated for investigating the molecular stability and chemical reactivity. Their energetic parameters including density, heats of formation, detonation properties, and impact sensitivity were extensively evaluated, and the effects of energetic groups were investigated as well. These newly designed wing-like and propeller-like multi-tetrazole molecules exhibit acceptable oxygen balance, moderate impact sensitivities, high density, excellent heats of formation, and good detonation performance. Especially, B3, B4, B5, and B6 are very helpful for enhancing their detonation performance (D ≥ 9500 m·s, P ≥ 41 GPa) are promising candidates for new environmentally friendly HEDMs.
采用密度泛函理论(DFT)方法,基于N中心多四唑与各种含能基团的组合,设计了一类新型的翼状和螺旋桨状多四唑分子。计算了优化后的几何结构、电子性质和热力学性质,以研究分子的稳定性和化学反应性。广泛评估了它们的含能参数,包括密度、生成热、爆轰性能和撞击感度,并研究了含能基团的影响。这些新设计的翼状和螺旋桨状多四唑分子表现出可接受的氧平衡、适度的撞击感度、高密度、优异的生成热和良好的爆轰性能。特别是,B3、B4、B5和B6对提高它们的爆轰性能非常有帮助(D≥9500 m·s,P≥41 GPa),是新型环保高能炸药的有前途的候选物。