Sun Moxin, Xie Wenjie, Lai Qi, Zhao Gang, Yin Ping, Pang Siping
School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, China.
Sichuan Huachuan Industrial Co., Ltd., Chengdu 610106, China.
Molecules. 2025 Jun 13;30(12):2589. doi: 10.3390/molecules30122589.
The safety concerns associated with sensitivity issues regarding long nitrogen chain-based energetic compounds, especially for eight or more catenated nitrogen atoms in backbones, need to be resolved. Incorporating specific functional groups represents a key approach for enhancing stability in organic energetic materials. This study reports the synthesis of 1,1'-(diazene-1,2-diyl)bis(4-nitro-1H-1,2,3-triazole-5-carboxamide) (), an N8-chain compound featuring strategically placed amide groups. Employing THA(-tosylhydroxylamine) and KMnO, 1,1'-(diazene-1,2-diyl)bis(4-nitro-1H-1,2,3-triazole-5-carboxamide) () was synthesized and underwent N-amination and oxidative azo coupling. Comprehensive characterization, including X-ray diffraction, mechanical sensitivity testing, and theoretical analysis, alongside comparative studies with known N8 compounds, revealed that S8 exhibits unprecedented stability within its class. Among reported N8-catenated nitrogen chain compounds, attributed to the incorporation of the amide functionality, demonstrates the highest impact sensitivity (IS = 10 J) and friction sensitivity (FS = 40 N) while maintaining excellent detonation performance ( = 8317 ms, = 28.27 GPa). This work highlights the amide group as a critical structural part for achieving high stability in sensitive long-nitrogen-chain energetic materials without compromising performance.
与基于长氮链的含能化合物的敏感性问题相关的安全问题,尤其是对于主链中含有八个或更多个相连氮原子的情况,需要得到解决。引入特定官能团是提高有机含能材料稳定性的关键方法。本研究报道了1,1'-(重氮烯-1,2-二基)双(4-硝基-1H-1,2,3-三唑-5-甲酰胺)()的合成,这是一种具有策略性放置酰胺基团的N8链化合物。采用对甲苯磺酰羟胺(THA)和高锰酸钾,合成了1,1'-(重氮烯-1,2-二基)双(4-硝基-1H-1,2,3-三唑-5-甲酰胺)(),并进行了N-胺化和氧化偶氮偶联反应。通过包括X射线衍射、机械敏感性测试和理论分析在内的综合表征,以及与已知N8化合物的对比研究,发现S8在其同类化合物中表现出前所未有的稳定性。在已报道的N8相连氮链化合物中,由于酰胺官能团的引入,在保持优异爆轰性能( = 8317 ms, = 28.27 GPa)的同时,表现出最高的撞击感度(IS = 10 J)和摩擦感度(FS = 40 N)。这项工作突出了酰胺基团是在不影响性能的情况下,实现敏感长氮链含能材料高稳定性的关键结构部分。