Baxter Amanda F, Martin Igor, Christe Karl O, Haiges Ralf
Loker Hydrocarbon Research Institute and Department of Chemistry , University of Southern California , Los Angeles , California 90089-1661 , United States.
J Am Chem Soc. 2018 Nov 7;140(44):15089-15098. doi: 10.1021/jacs.8b10200. Epub 2018 Oct 26.
Five nitroformate (trinitromethanide) salts featuring nitrogen-containing cations were prepared. The salts were characterized by multinuclear NMR, IR, and Raman spectroscopy, single-crystal X-ray analysis, differential thermal analysis, and friction and impact sensitivity testing. These experimental data are supplemented with thermochemical calculations using the Gaussian-4 composite method, and the performance of these energetic materials was calculated based on the Chapman-Jouguet thermodynamic detonation theory. Out of the five compounds studied by us, the formamidinium salt, [CH(NH)][C(NO)], is most interesting. Its performance matches that of RDX (research department explosive, cyclotrimethylenetrinitramine), while it is much less sensitive to impact and friction and, therefore, might be an excellent, less sensitive replacement for RDX.
制备了五种含有含氮阳离子的硝仿盐(三硝基甲烷盐)。通过多核核磁共振、红外和拉曼光谱、单晶X射线分析、差热分析以及摩擦和撞击感度测试对这些盐进行了表征。这些实验数据辅以使用高斯-4复合方法的热化学计算,并基于查普曼-朱盖特热力学爆轰理论计算了这些含能材料的性能。在我们研究的这五种化合物中,甲脒盐[CH(NH)][C(NO)]最为有趣。它的性能与RDX(研究部炸药,环三亚甲基三硝胺)相当,同时对撞击和摩擦的敏感度要低得多,因此可能是一种出色的、敏感度较低的RDX替代品。