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首页> 外文期刊>CrystEngComm >Nitramino-functionalized tetracyclic oxadiazoles as energetic materials with high performance and high stability: crystal structures and energetic properties
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Nitramino-functionalized tetracyclic oxadiazoles as energetic materials with high performance and high stability: crystal structures and energetic properties

机译:硝基官能化四环素Zoles作为具有高性能和高稳定性的能量材料:晶体结构和能量性质

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摘要

A series of tetracyclic energetic materials were developed through the introduction of 1,2,4-oxadiazole into nitramino-1,2,5-oxadiazole. All these thirteen new compounds were fully characterized and seven of them were further confirmed by single crystal X-ray diffraction. Salt formation led to planarization of the parent structure, reduction in lengths, increase in bond-dissociation energies of N–NO _(2) bonds, and formation of hydrogen bonds, which significantly increased decomposition temperatures from 84 °C (the neutral compound) to 187–303 °C (the energetic salts). Thus, the increase in thermal stability falls in the range of 103–219 °C. To the best of our knowledge, 219 °C is the largest reported increase in thermal stability due to salt formation. In addition, electrostatic surface potentials and noncovalent interactions (π–π stacking) were analyzed to understand structure–property relationships of these compounds. Both theoretical calculations and practical explosive experiments indicate that the dihydroxylammonium salt exhibits better detonation performance than the powerful explosive RDX. The tetracyclic backbone provides these compounds with enhanced stability. Short synthesis steps, low cost, good thermostability, excellent detonation performance, and acceptable mechanical sensitivity highlight the practical applications of these energetic compounds.
机译:通过将1,2,4-氧代唑引入硝基氨基-1,2,5-氧代唑来开发出一系列四环型能量材料。所有这些十三新化合物都完全表征,并且通过单晶X射线衍射进一步证实了7种。盐形成导致母体结构的平坦化,长度的减小,N-No _(2)键的键 - 解离能增加,以及形成氢键的形成,其显着增加了84℃的分解温度(中性化合物)到187-303°C(能量盐)。因此,热稳定性的增加落在103-219℃的范围内。据我们所知,219°C是由于盐形成引起的最大报告的热稳定性增加。另外,分析静电表面电位和非共价相互作用(π-π堆叠)以了解这些化合物的结构性质关系。理论计算和实际爆炸性实验都表明二羟基铵盐表现出比强大的爆炸性RDX更好的爆炸性能。四环骨架提供这些化合物,具有增强的稳定性。短合成步骤,成本低,耐热性,优异的爆轰性能,可接受的机械灵敏度突出了这些能量化合物的实际应用。

著录项

  • 来源
    《CrystEngComm》 |2018年第30期|共8页
  • 作者

    Qi Sun; Qiuhan Lin; Ming Lu;

  • 作者单位

    School of Chemical Engineering Nanjing University of Science and Technology;

    School of Chemical Engineering Nanjing University of Science and Technology;

    School of Chemical Engineering Nanjing University of Science and Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;晶体学;
  • 关键词

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