Wurzenberger Maximilian H H, Gruhne Michael S, Lommel Marcus, Szimhardt Norbert, Klapötke Thomas M, Stierstorfer Jörg
Department of Chemistry, Ludwig-Maximilian-University of Munich, Butenandtstr. 5-13, 81377, Munich, Germany.
Chem Asian J. 2019 Jun 3;14(11):2018-2028. doi: 10.1002/asia.201900269. Epub 2019 May 8.
Energetic coordination compounds (ECC) based on 3d or 4d transition metals show promising characteristics to be used as potential replacements for highly toxic lead-containing primary explosives. Herein we report the synthesis of 12 new ECC based on 1-azidoethyl-5H-tetrazole (AET) or 1-ethyl-5H-tetrazole (1-ETZ) as nitrogen-rich ligands as well as various central metals (Cu , Fe , Zn , Ag ) and anions such as perchlorate and nitrate. The influence of the increased endothermicity by adding an additional azide group was studied by comparing analogous ECC based on AET and 1-ETZ. Furthermore, the compounds were extensively analyzed by XRD, IR, EA, solid-state UV/Vis, and DTA as well as their sensitivities toward impact and friction were determined with BAM standard techniques, together with their sensitivity against electrostatic discharge. The sensitivities were compared with the one toward ball drop impact measurements. Classical initiation tests (nitropenta filled detonators) and ignition by laser irradiation highly prove the potential use of the most promising compounds in lead-free initiation systems.
基于3d或4d过渡金属的高能配位化合物(ECC)展现出有望替代剧毒含铅起爆药的潜在特性。在此,我们报告了12种新型ECC的合成,这些化合物以1-叠氮基乙基-5H-四唑(AET)或1-乙基-5H-四唑(1-ETZ)作为富氮配体,以及各种中心金属(Cu、Fe、Zn、Ag)和高氯酸盐、硝酸盐等阴离子。通过比较基于AET和1-ETZ的类似ECC,研究了额外添加叠氮基团对吸热性增加的影响。此外,通过XRD、IR、EA、固态UV/Vis和DTA对这些化合物进行了广泛分析,并用BAM标准技术测定了它们对撞击和摩擦的敏感度,以及它们对静电放电的敏感度。将这些敏感度与落球冲击测量的敏感度进行了比较。经典起爆试验(填充五硝基苯的雷管)和激光照射点火有力地证明了最具潜力的化合物在无铅起爆系统中的潜在用途。