Gruhne Michael S, Lommel Marcus, Wurzenberger Maximilian H H, Klapötke Thomas M, Stierstorfer Jörg
Department of Chemistry, Ludwig-Maximilian University Munich, Butenandtstr. 5-13, 81377 Munich, Germany.
Inorg Chem. 2021 Apr 5;60(7):4816-4828. doi: 10.1021/acs.inorgchem.0c03752. Epub 2021 Mar 16.
Ethylenedinitramine (HEDN, ) was prepared in a simple manner and with a high overall yield by direct nitration of 2-imidazolidinone using 100% HNO at 0 °C and subsequent hydrolysis in water at 100 °C. The versatility of allows its application as starting material for a broad range of different materials. It was used for the preparation of both various salts and cocrystalline materials incorporating varying amounts of the TATOT moiety. Furthermore, HEDN was successfully applied in the concept of energetic coordination compounds (ECCs) resulting in five copper(II) and two silver(I) complexes. A reaction path for the direct precipitation or slow crystallization of 17 different salts, including several alkali, alkaline earth, silver, and nitrogen-rich samples, is presented. The substances were extensively characterized by low-temperature single-crystal X-ray diffraction, elemental analysis (EA), IR spectroscopy, differential thermal analysis (DTA), and thermogravimetric analysis (TGA), proving their high thermal stability, especially of the alkali salts. In addition, and all salts were characterized by H, C, and N NMR, whereas was also investigated using the beneficial H-N HMBC NMR spectroscopy. The sensitivities toward various mechanical stimuli according to BAM standard methods, as well as ball drop impact and electrostatic discharge (ESD) were determined using the BAM 1-out-6 method. Hot plate and hot needle tests were performed, followed by further characterization of the copper(II)-based ECCs through laser ignition experiments and UV-vis spectroscopy, offering new candidates for nontoxic, less sensitive laser-ignitable materials. Several detonation parameters were calculated using EXPLO5 (V6.05.02).
乙二硝胺(HEDN)通过在0℃下用100%硝酸直接硝化2-咪唑啉酮并随后在100℃的水中水解,以简单的方式且总产率较高地制备出来。HEDN的多功能性使其可作为多种不同材料的起始原料。它被用于制备各种盐以及包含不同量TATOT部分的共晶材料。此外,HEDN成功应用于高能配位化合物(ECCs)的概念中,得到了五种铜(II)和两种银(I)配合物。本文给出了17种不同盐(包括几种碱金属、碱土金属、银和富氮样品)直接沉淀或缓慢结晶的反应路径。这些物质通过低温单晶X射线衍射、元素分析(EA)、红外光谱、差示热分析(DTA)和热重分析(TGA)进行了广泛表征,证明了它们尤其是碱金属盐具有高热稳定性。此外,HEDN和所有盐通过氢、碳和氮核磁共振进行了表征,而HEDN还使用了有益的氢-氮异核多键相关核磁共振光谱进行了研究。根据BAM标准方法测定了对各种机械刺激以及落球冲击和静电放电(ESD)的敏感度,使用BAM 1-out-6方法进行测定。进行了热板和热针试验,随后通过激光点火实验和紫外-可见光谱对基于铜(II)的ECCs进行了进一步表征,为无毒、低敏感度的激光可燃材料提供了新的候选物。使用EXPLO5(V6.05.02)计算了几个爆轰参数。