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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Copper-based energetic MOFs with 3-nitro-1H-1,2,4-triazole: solvent-dependent syntheses, structures and energetic performances
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Copper-based energetic MOFs with 3-nitro-1H-1,2,4-triazole: solvent-dependent syntheses, structures and energetic performances

机译:具有3-硝基-1H-1,2,4-三唑的铜基高能MOF:溶剂依赖性合成,结构和高能性能

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The persistent challenge in the field of energetic materials is how to synthesize energetic compounds with high density, high heat of detonation and outstanding detonation performance by gathering the maximum number of energetic groups in the smallest volume. The self-assembly of energetic groups with metal ions is crucially influenced by the solvent conditions. Here, the reaction of Cu(NO3)(2)center dot 3H(2)O with 3-nitro-1H-1,2,4-triazole (Hntz) in aqueous ammonia under hydrothermal conditions via a self-assembly strategy yielded the Cu(I) energetic compound [Cu(ntz)](n) (1). In order to further enhance the energetic property, an N-3(-) anion was introduced into the system and two Cu(II) energetic compounds, [Cu(ntz)(N-3)(DMF)](n) (2) and [Cu(ntz)(N-3)(H2O)](n) (3), were successfully synthesized under different solvent conditions. Structural analyses show that compound 1 features a compacted 3D structure framework and compounds 2-3 exhibit 1D butterfly-like chain structures. The experimental results reveal that 1 possesses attractive thermal stability up to 315.0 degrees C and 1-3 present excellent insensitivity. Importantly, the heat of detonation of compound 2 has been factually improved due to the abundant energetic bonds in the coordinated DMF molecules compared to 1 and lots of energies are taken away during the release of the coordinated solvent molecules in the low temperature range resulting in the obvious decreases in detonation pressure and detonation velocity for compounds 2-3, which further exemplifies that the subtle change of reaction conditions may have a crucial effect on the resultant detonation performance. In addition, the detonation performances of 1-3 calculated by both a simple method for metal-containing explosives developed by Pang et al. and the commercial program EXPLO5 v6.01, are discussed in detail.
机译:高能材料领域的持续挑战是如何通过以最小的体积收集最大数量的高能基团来合成高密度,高爆轰热和出色爆轰性能的高能化合物。高能基团与金属离子的自组装受溶剂条件的影响很大。在这里,Cu(NO3)(2)中心点3H(2)O与3-硝基-1H-1,2,4-三唑(Hntz)在氨水中在水热条件下通过自组装策略反应产生了Cu(I)高能化合物[Cu(ntz)](n)(1)。为了进一步增强能量性质,将N-3(-)阴离子引入系统中,并添加了两种Cu(II)高能化合物[Cu(ntz)(N-3)(DMF)](n)(2 )和[Cu(ntz)(N-3)(H2O)](n)(3)在不同溶剂条件下成功合成。结构分析表明,化合物1具有紧密的3D结构框架,化合物2-3具有1D蝴蝶状链结构。实验结果表明1具有高达315.0摄氏度的吸引人的热稳定性,而1-3具有出色的不敏感性。重要的是,化合物2的爆炸热实际上得到了改善,因为与1相比,配位DMF分子中具有丰富的高能键,并且在低温范围内释放出配位溶剂分子时,大量能量被带走,从而导致化合物2-3的爆炸压力和爆炸速度明显降低,这进一步说明反应条件的细微变化可能对所得的爆炸性能产生关键影响。此外,Pang等人开发的一种简单的含金属炸药方法,其爆轰性能为1-3。并详细讨论了商业程序EXPLO5 v6.01。

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