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首页> 外文期刊>Journal of the American Chemical Society >Nitrogen-Rich Tetrazolo[1,5-b]pyridazine: Promising Building Block for Advanced Energetic Materials
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Nitrogen-Rich Tetrazolo[1,5-b]pyridazine: Promising Building Block for Advanced Energetic Materials

机译:富氮的替扎洛[1,5-b]哒嗪:先进含能材料的有前途的基石

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摘要

Two metal-free explosives, tetrazolo[l,5-b]pyridazine-containing molecules [6-azido-8-nitrotetrazolo[l,5-b]pyridazine-7-amine (3at) and 8-nitrotetrazolo[l,5-b]pyridazine-6,7-diamine (6)], were obtained via straightforward two-step synthetic routes from commercially available reagents. Compound 3at displays an excellent detonation performance (D_v = 8746 m s~(-1) and P = 31.5 GPa) that is superior to commercial primary explosives such as lead azide and diazodinitrophenol (DDNP). Compound 6 has superior thermal stability, remarkable insensitivity, and good detonation performance, strongly suggesting it as an acceptable secondary explosive. The initiating ability of compound 3at has been tested by detonating 500 mg of RDX with a surprisingly low minimum primary charge of 40 mg. The extraordinary initiating power surpasses conventional primary explosives, such as commercial DDNP (70 mg) and reported 6-nitro-7-azido-pyrazol[3,4-d][l,2,3]triazine-2-oxide (ICM-103) (60 mg). The outstanding detonation power of 3at contributes to its future prospects as a promising green primary explosive. In addition, the environmentally benign methodology for the synthesis of 3at effectively shortens the time from laboratory-scale research to practical applications.
机译:两种无金属炸药,含四唑[1,5-b]哒嗪的分子[6-叠氮基-8-硝基四唑[1,5-b]哒嗪-7-胺(3at)和8-硝基四唑[1,5-] b]哒嗪-6,7-二胺(6)]是通过直接的两步合成路线从商购试剂中获得的。化合物3at具有出色的爆炸性能(D_v = 8746 m s〜(-1),P = 31.5 GPa),优于叠氮化铅和重氮二硝基苯酚(DDNP)等商业主要炸药。化合物6具有优异的热稳定性,出色的不敏感性和良好的爆炸性能,强烈表明它是可接受的二次炸药。化合物3at的引发能力已通过以令人惊讶的低40 mg最低引爆力引爆500 mg RDX进行了测试。非凡的起爆能力超越了常规的主要炸药,例如商业化的DDNP(70毫克),并报道了6-硝基-7-叠氮基吡唑并[3,4-d] [1,2,3]三嗪-2-氧化物(ICM- 103)(60毫克)。 3at具有出色的起爆能力,可作为有前景的绿色主要炸药为其未来前景做出贡献。此外,用于3at合成的环境友好方法学可有效缩短从实验室规模研究到实际应用的时间。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第7期|3652-3657|共6页
  • 作者

  • 作者单位

    Nanjing University of Science and Technology Nanjing 210094 China;

    Naval Research Laboratory Washington D.C. 2037S United States;

    Nanjing University of Science and Technology Nanjing 210094 China Department of Chemistry University of Idaho Moscow Idaho 83844-2343 United States;

    Department of Chemistry University of Idaho Moscow Idaho 83844-2343 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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