Yang Xinbo, Li Nan, Li Yuchuan, Pang Siping
School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China.
School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 100081, China.
J Org Chem. 2023 Sep 1;88(17):12481-12492. doi: 10.1021/acs.joc.3c01225. Epub 2023 Aug 17.
The worthwhile idea of whether amine-like catenated nitrogen compounds are stable enough to be used as high-energy materials was proposed and answered. Abstracting the NH structure into NR (R is the substituent) yields a new class of amine-like catenated nitrogen compounds. Most of the azole ring structures have a high nitrogen content and stability. Inspired by this idea, a series of new amine-like catenated nitrogen compounds ( to ) were designed, and their basic energetic properties were calculated. The results showed that (1) amine-like molecular structures are often characterized by low density; however, the density of these compounds increases as the number of nitrogens in the azole ring increases; (2) these catenated nitrogen compounds generally have extremely high enthalpies of formation (882.91-2652.03 kJ/mol), and the detonation velocity of some compounds exceeds 9254.00 m/s; (3) the detonation performance of amine-like catenated nitrogen compounds designed based on imidazole and pyrazole rings is poor due to their low nitrogen content; and (4) the bond dissociation enthalpy of trigger bonds of most compounds is higher than 84 kJ/mol, indicating that these compounds have a certain thermodynamic stability. In summary, amine-like catenated nitrogen compounds have the potential to become energetic compounds with excellent detonation properties and should be considered to be synthesized by experimental chemists.
关于胺类链状氮化合物是否稳定到足以用作高能材料这一有价值的想法被提出并得到解答。将NH结构抽象为NR(R为取代基)可得到一类新型的胺类链状氮化合物。大多数唑环结构具有高氮含量和稳定性。受此想法启发,设计了一系列新型胺类链状氮化合物(至),并计算了它们的基本能量性质。结果表明:(1)胺类分子结构通常具有低密度的特点;然而,这些化合物的密度随着唑环中氮原子数的增加而增大;(2)这些链状氮化合物一般具有极高的生成焓(882.91 - 2652.03 kJ/mol),一些化合物的爆速超过9254.00 m/s;(3)基于咪唑和吡唑环设计的胺类链状氮化合物由于其低氮含量,爆轰性能较差;(4)大多数化合物引发键的键解离焓高于84 kJ/mol,表明这些化合物具有一定的热力学稳定性。综上所述,胺类链状氮化合物有潜力成为具有优异爆轰性能的高能化合物,实验化学家应考虑对其进行合成。