Gruhne Michael S, Wurzenberger Maximilian H H, Lommel Marcus, Stierstorfer Jörg
Energetic Materials Research, Department of Chemistry, University of Munich (LMU), Butenandtstr. 5-13, 81377, München, Germany.
Chemistry. 2021 Jun 21;27(35):9112-9123. doi: 10.1002/chem.202100747. Epub 2021 Jun 10.
Dinitraminic acid (HN(NO ) , HDN) was prepared by ion exchange chromatography and acid-base reaction with basic copper(II) carbonate allowed the in situ preparation of copper(II) dinitramide, which was reacted with twelve nitrogen-rich ligands, for example, 4-amino-1,2,4-triazole, 1-methyl-5H-tetrazole, di(5H-tetrazolyl)-methane/-ethane/-propane/-butane. Nine of the complexes were investigated by low-temperature X-ray diffraction. In addition, all compounds were investigated by infrared spectroscopy (IR), differential thermal analysis (DTA), elemental analysis (EA) and thermogravimetric analysis (TGA) for selected compounds. Furthermore, investigations of the materials were carried out regarding their sensitivity toward impact (IS), friction (FS), ball drop impact (BDIS) and electrostatic discharge (ESD). In addition, hot plate and hot needle tests were performed. Complex Cu(AMT) (H O) , based on 1-amino-5-methyltetrazole (AMT), is most outstanding for its detonative behavior and thus also capable of initiating PETN in classical initiation experiments. Laser ignition experiments at a wavelength of 915 nm were performed for all substances and solid-state UV-Vis spectra were recorded to apprehend the ignition mechanism.
通过离子交换色谱法制备了二硝酰胺酸(HN(NO₂)₂,HDN),并通过与碱式碳酸铜进行酸碱反应原位制备了二硝酰胺铜(II),使其与十二种富氮配体反应,例如4-氨基-1,2,4-三唑、1-甲基-5H-四唑、二(5H-四唑基)-甲烷/-乙烷/-丙烷/-丁烷。通过低温X射线衍射对其中九种配合物进行了研究。此外,对所有化合物进行了红外光谱(IR)、差示热分析(DTA)、元素分析(EA),并对选定的化合物进行了热重分析(TGA)。此外,还对这些材料的冲击感度(IS)、摩擦感度(FS)、落球冲击感度(BDIS)和静电放电感度(ESD)进行了研究。此外,还进行了热板和热针试验。基于1-氨基-5-甲基四唑(AMT)的配合物Cu(AMT)₂(H₂O)₂在其爆轰行为方面最为突出,因此在经典起爆实验中也能够引发太安(PETN)。对所有物质进行了波长为915 nm的激光点火实验,并记录了固态紫外-可见光谱以了解点火机制。