Klapötke Thomas M, Stierstorfer Jörg
Energetic Materials Research, Department of Chemistry and Biochemistry, University of Munich , Butenandtstr. 5-13, D-81377 Munich, Germany.
Dalton Trans. 2009 Jan 28(4):643-53. doi: 10.1039/b811767e.
The highly energetic isomers azidoformamidinium dinitramide (1) and 5-aminotetrazolium dinitramide (2) were synthesized by the reaction of potassium dinitramide and azidoformamidinium perchlorate and 5-aminotetrazolium perchlorate, respectively. Both compounds are characterized by an oxygen balance of omega=0. In addition, 1H-tetrazolium dinitramide (3) and 2-methyl-5-aminotetrazolium dinitramide (4) were synthesized using 1H-tetrazolium perchlorate (5) and 2-methyl-5-aminotetrazolium perchlorate. A full characterization of the chemical properties (single-crystal X-ray diffraction, IR and Raman spectroscopy, multinuclear NMR spectroscopy, differential scanning calorimetry and mass spectrometry) as well as of the energetic characteristics is given in this work. The heats of formation were calculated (CBS-4M) in an extensive computational study. The detonation parameters of compounds 1-4 were computed using the EXPLO5 software resulting in auspicious values for potential applications as high explosives. For 2 this was confirmed by a "Koenen" steel sleeve test using a critical diameter of 10 mm. In addition, the sensitivities were tested using the BAM drop hammer, BAM friction tester and an electrical spark device. Finally, the synthesis and characterization, including the X-ray structure of the highly hygroscopic 1H-tetrazolium perchlorate (5), is given in this work.
通过二硝酰胺钾分别与高氯酸叠氮甲脒和高氯酸5-氨基四唑反应,合成了高能异构体叠氮甲脒二硝酰胺(1)和5-氨基四唑二硝酰胺(2)。这两种化合物的氧平衡均为ω=0。此外,使用高氯酸1H-四唑(5)和高氯酸2-甲基-5-氨基四唑合成了1H-四唑二硝酰胺(3)和2-甲基-5-氨基四唑二硝酰胺(4)。本文给出了化学性质(单晶X射线衍射、红外和拉曼光谱、多核NMR光谱、差示扫描量热法和质谱)以及能量特性的全面表征。在一项广泛的计算研究中计算了生成热(CBS-4M)。使用EXPLO5软件计算了化合物1-4的爆轰参数,得到了作为高能炸药潜在应用的理想值。对于化合物2,通过临界直径为10 mm的“柯嫩”钢套筒试验得到了证实。此外,使用BAM落锤、BAM摩擦测试仪和电火花装置测试了感度。最后,本文给出了高吸湿性的高氯酸1H-四唑(5)的合成与表征,包括其X射线结构。