Department of Chemistry, Ludwig Maximilian University of Munich (LMU), Butenandtstr. 5-13, 81377, Munich, Germany.
Chempluschem. 2022 Sep;87(9):e202200186. doi: 10.1002/cplu.202200186. Epub 2022 Jul 21.
Azide and nitrimino functions are among the most energetic substituents that can be introduced to the skeleton to enhance the energetic properties of a compound. In this study, we report the successful synthesis of a compound that combines both, azide and nitrimino substituents directly attached to one tetrazole scaffold. 1-Nitrimino-5-azidotetrazole is prepared by nitration of 1-amino-5-azidotetrazole. Subsequent salination with ammonia and guanidinium carbonate yields two highly energetic derivatives. All energetic compounds, as well as the intermediate steps of an alternatively developed synthesis strategy, were analysed and characterized in detail. In addition to multinuclear NMR and IR spectroscopy, crystal structures of all key compounds were measured. The sensitivities (friction, impact, electrostatic discharge and thermal) were determined accordingly. In addition, the detonation parameters of all energetic substances were calculated with the EXPLO5 code, which was fed with the enthalpy of formation (atomization method based on CBS-4M) and the crystallographic densities.
叠氮基和硝基亚氨基官能团是可引入骨架以增强化合物能量特性的最具能量的取代基之一。在这项研究中,我们报告了成功合成了一种化合物,该化合物将叠氮基和硝基亚氨基取代基直接连接到一个四唑骨架上。1-硝基亚氨基-5-叠氮四唑是通过 1-氨基-5-叠氮四唑的硝化制备的。随后用氨和碳酸胍进行盐化,得到两种高能量衍生物。所有高能化合物以及另一种开发的合成策略的中间步骤都进行了详细的分析和表征。除多核 NMR 和 IR 光谱外,还测量了所有关键化合物的晶体结构。根据摩擦、冲击、静电放电和热等相应地确定了它们的灵敏度。此外,还使用 EXPLO5 代码计算了所有高能物质的爆轰参数,该代码使用生成焓(基于 CBS-4M 的原子化方法)和晶体密度进行了填充。