Lu Zujia, Li Cong, Li Shaoqun, Yu Qiyao, Zhang Jianguo
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.
State Key Laboratory of Transient Chemical Effects and Control, Shaanxi Applied Physics and Chemistry Research Institute, Xi'an 710061, China.
Molecules. 2025 Feb 27;30(5):1101. doi: 10.3390/molecules30051101.
The five-membered fused six-membered nitrogen heteroaromatic ring system is a crucial skeleton in the design and synthesis of energetic compounds. Based on this skeleton, many high-performance energetic compounds have been synthesized. However, to date, no one has conducted a systematic study on the characteristics of this skeleton itself. To assess how the number and position of nitrogen atoms affect the energy and stability of this type of skeleton, one to four nitrogen-substituted skeleton molecules were analyzed using Density Functional Theory (DFT) calculations. Natural population analysis (NPA), Laplacian bond order (LBO) analysis, aromaticity studies, and enthalpy of formation calculations were performed. Patterns observed in the computational results were summarized, and their potential correlations were analyzed. Based on these findings, design recommendations for derivatives of these skeletons in energetic compounds were proposed to serve as a reference for energetic material chemists.
五元稠合六元氮杂芳环体系是含能化合物设计与合成中的关键骨架。基于该骨架,已合成了许多高性能含能化合物。然而,迄今为止,尚未有人对该骨架本身的特性进行系统研究。为评估氮原子的数量和位置如何影响这类骨架的能量和稳定性,使用密度泛函理论(DFT)计算分析了一至四个氮取代的骨架分子。进行了自然布居分析(NPA)、拉普拉斯键级(LBO)分析、芳香性研究和生成焓计算。总结了计算结果中观察到的规律,并分析了它们的潜在相关性。基于这些发现,提出了含能化合物中这些骨架衍生物的设计建议,为含能材料化学家提供参考。