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New ligands and energetic coordination compounds for use as primary and laser ignitable explosives

机译:新配体和充满活力的协调化合物,用作初级和激光可燃炸药

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The reliable but highly harmful compounds lead azide and lead styphnate still dominate the field of primary explosives being applied in most ignition and initiation systems to this day. Therefore, an extensive investigation into energetic materials led to the very promising strategy of developing energetic coordination compounds (ECC) with similar performance and minimized toxicity. Energetic coordination compounds can easily be tuned toward their resulting performance and sensitivities by varying the metal center, the ligand system, and the corresponding anion. In the present study, the new ligands I-(2-azidoethyl-5H-tetrazole) and l-(3-azidopropyl-5H-tetrazole), were coordinated to different metal centers (e.g. Fe~(2+), Cu~(2+), Ag+) and compared to each other. The ligands were synthesized starting from 2-chloroethyl-1-ammonium chloride and the corresponding propyl derivative. In addition, the ligands 1- and 2-amino-5H-tetrazole as well as 1- and 2-amino-5-methyl-tetrazole were applied and several highly energetic complexes characterized. Furthermore, the influence of the additional methyl group on the coordination sphere and the resulting difference of the energetic properties were investigated. Characterization includes XRD, IR, EA, DTA and sensitivity (impact, friction, and ESD) measurements as well as for selected compounds classical initiation tests (nitropenta filled detonators). Laser irradiation of the received primary explosives with near-infrared light (NIR) led to a reliable and safe ignition and expands their potential for future applications.
机译:可靠但高度有害的化合物铅叠氮化物和铅滴水仍然占据了当天在大多数点火和发起系统中应用的原发性炸药领域。因此,对精力充沛的材料进行了广泛的调查,导致了具有相似性能和最小化毒性的高能量协调化合物(ECC)的有前途的策略。通过改变金属中心,配体系统和相应的阴离子,可以容易地调谐能量的协调化合物,以通过改变金属中心,配体系统和相应的阴离子来调谐其所产生的性能和敏感性。在本研究中,新的配体I-(2-β-唑乙基-5H-四唑)和L-(3-氮杂丙基-5H-四唑)与不同的金属中心(例如Fe〜(2+),Cu〜( 2+),AG +)并相互比较。从2-氯乙基-1-氯化铵和相应的丙基衍生物开始合成配体。此外,施加配体1-和2-氨基-5H-四唑以及1-和2-氨基-5-甲基 - 四唑,其特征在于具有几个高性能的复合物。此外,研究了另外的甲基对协调球的影响和所得的能量性质的差异。表征包括XRD,IR,EA,DTA和灵敏度(冲击,摩擦和ESD)测量以及所选择的化合物经典起始试验(亚硝酸镍填充的雷管)。具有近红外光(NIR)的接收的初级炸药的激光照射导致可靠且安全的点火,并扩大它们对未来应用的潜力。

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