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首页> 外文期刊>SN Applied Sciences >High energy density materials based on fluorinated bridged trinitromethyl azo triazole derivatives: a quantum chemical study of thermodynamic and energetic properties
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High energy density materials based on fluorinated bridged trinitromethyl azo triazole derivatives: a quantum chemical study of thermodynamic and energetic properties

机译:基于氟化桥接三硝基甲基偶氮三唑衍生物的高能量密度材料:热力学和能量特性的量子化学研究

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摘要

High energy density materials (HEDM) have gained extensive attention due to their energetic properties and safety issues. Nitro and fluoro groups, among others, have become viable substituents on the triazole framework because of their particular contribution to detonation properties and moderate sensitivity. In this study, Density Function Theory (DFT) approach was employed to design fluorinated bis(trinitromethyl) azo triazoles. The molecular structures, thermodynamic properties of gaseous species (e.g., enthalpies of detonation and enthalpies of formation) and energetic properties of solid materials (detonation heat Q, pressure PD and velocity VD) have been investigated. The best characteristics attained for the designed azo fluorinated solid compounds are as follows: Q 1650–1690 cal g~(−1), PD 44–46 GPa and VD 9.8 km s~(−1). These characteristics are superior to those of conventional explosives, indicating that fluorinated bis(trinitromethyl) azo triazoles are promising HEDM.
机译:由于它们的能量性质和安全问题,高能量密度材料(HEDM)已获得广泛的关注。硝基和氟基团等,在三唑框架上,在三唑框架上成为可行的取代基,因为它们对爆轰性能和中度敏感性的特殊贡献。在该研究中,采用密度函数理论(DFT)方法设计氟化双(三硝基甲基)偶氮唑。分子结构,气态物质的热力学性质(例如,爆炸焓和形成焓)和固体材料的能量性质(爆炸热Q,压力Pd和速度Vd)。所达到设计的氟化固体化合物所获得的最佳特性如下:Q 1650-1690 Cal G〜(-1),PD 44-46 GPA和VD 9.8 km S〜(-1)。这些特征优于常规炸药的特性,表明氟化双(三硝基甲基)偶氮三唑是有前途的HEDM。

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  • 来源
    《SN Applied Sciences》 |2020年第11期|1843.1-1843.13|共13页
  • 作者单位

    Department of Materials and Energy Science and Engineering The Nelson Mandela African Institution of Science and Technology P.O Box 447 Arusha Tanzania Department of Science Mwenge Catholic University P.O Box 1226 Moshi Tanzania;

    Department of Materials and Energy Science and Engineering The Nelson Mandela African Institution of Science and Technology P.O Box 447 Arusha Tanzania;

    Department of Materials and Energy Science and Engineering The Nelson Mandela African Institution of Science and Technology P.O Box 447 Arusha Tanzania;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    High energy density materials; Fluorinated bis(trinitromethyl) azo triazoles; DFT; Thermodynamic and energetic properties;

    机译:高能量密度材料;氟化双(三硝基甲基)偶氮三唑;DFT;热力学和能量性质;

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