首页> 外文期刊>New Journal of Chemistry >All-nitrogen ion-based compounds as energetic oxidizers: a theoretical study on [N-5(+)][NO3-], [N-5(+)][N(NO2)(2)(-)], [NO2+][N-5(-)] and NO2-N-3
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All-nitrogen ion-based compounds as energetic oxidizers: a theoretical study on [N-5(+)][NO3-], [N-5(+)][N(NO2)(2)(-)], [NO2+][N-5(-)] and NO2-N-3

机译:基于全氮离子的化合物作为能量氧化剂:[N-5(+)] [NO 3-],[N-5(+)] [N(NO2)(2)( - )],[ no2 +] [n-5( - )]和no2-n-3

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摘要

All-nitrogen ions,viz.N-3(-), N-5(+), and N-5(-), are hot pieces to construct high-energy-density materials. However, all reported molecules containing these ions exhibit negative oxygen balance, which means that all those materials cannot serve as energetic oxidizers. Herein, we present optimized structures, thermochemical parameters and energetic properties of four new energetic oxidizers,viz.[N-5(+)][NO3-], [N-5(+)][N(NO2)(2)(-)], [NO2+][N-5(-)] and NO2-N-3, with very high oxygen balances (27.6-36.4%). Due to the presence of all-nitrogen-pieces, all these compounds exhibit extremely high heats of formation of 4.4-5.4 kJ g(-1)(410.2-737.8 kJ mol(-1)), which cause these oxidizers to exhibit good detonation performance (D: 7818-8873 m s(-1);P: 25.6-35.6 GPa). It should be noted that all the oxygen balances, heats of formation, and detonation performances of all these energetic compounds were better than those of the state-of-the-art compounds, such as ammonium dinitramide (ADN). Among them, [NO2+][N-5(-)] exhibited the best overall performance, thus making it to be a promising candidate as an energetic oxidizer.
机译:全氮离子,VIZ.N-3( - ),N-5(+)和N-5( - ),是构建高能密度材料的热块。然而,所有报告的含有这些离子的分子表现出负氧平衡,这意味着所有这些材料都不能用作能量氧化剂。在此,我们提供了四种新的能量氧化剂的优化结构,热化学参数和能量性质,ZiZ。[N-5(+)] [NO 3-],[N-5(+)] [n(no2)(2)( - ),[No2 +] [N-5( - )]和NO2-N-3,具有非常高的氧气余平(27.6-36.4%)。由于存在全氮碎片,所有这些化合物都具有极高的形成的4.4-5.4kJg(-1)(410.2-737.8kJ mol(-1)),这导致这些氧化剂表现出良好的爆炸性能(D:7818-8873 MS(-1); P:25.6-35.6 GPA)。应当注意,所有这些能量化合物的所有氧气平衡,形成的热量和爆炸性能都优于最先进的化合物,例如二硝基铵(AdN)。其中,[No2 +] [N-5( - )]表现出最佳的整体性能,从而使其成为有希望的候选者作为能量氧化剂。

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  • 来源
    《New Journal of Chemistry》 |2020年第26期|共8页
  • 作者单位

    Nanjing Univ Sci &

    Technol Sch Chem Engn Xiaolingwei 200 Nanjing 210094 Peoples R China;

    Nanjing Univ Sci &

    Technol Sch Chem Engn Xiaolingwei 200 Nanjing 210094 Peoples R China;

    Nanjing Univ Sci &

    Technol Sch Chem Engn Xiaolingwei 200 Nanjing 210094 Peoples R China;

    Nanjing Univ Sci &

    Technol Sch Chem Engn Xiaolingwei 200 Nanjing 210094 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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