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首页> 外文期刊>New Journal of Chemistry >New green energetic materials based on unsymmetrically substituted pyrazole-tetrazines and their hydroperchlorates
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New green energetic materials based on unsymmetrically substituted pyrazole-tetrazines and their hydroperchlorates

机译:基于不对称取代的吡唑-四嗪及其水二氢氯酸盐的新绿色能量材料

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摘要

Five novel nitrogen-rich energetic materials were synthesized using 3,6-bis(3,5-dimethyl-pyrazole-1-yl)-1,2,4,5-tetrazine (BT) and 3,6-bis(pyrazole-1-yl)-1,2,4,5-tetrazine as raw materials. The materials were comprehensively characterized by single-crystal X-ray diffraction, FT-IR, mass spectra and elemental analysis. The synthesized compounds show good experimental densities, ranging from 1.59 to 1.70 g cm(-3). DSC technology was used for analyzing the thermal stability. The decomposition temperatures of the five energetic materials ranged from 204.0 to 276.5 degrees C. Non-isothermal kinetic parameters and formation enthalpy values were computed. In addition, friction sensitivity measurements were performed according to BAM methods, and the results showed that the five compounds can be classified as insensitive energetic materials. For a better understanding of the electronic structural characteristics, the electrostatic potential (ESP) and natural bond orbitals (NBOs) of compounds 1 and 2 were further computed. The detonation parameters were obtained via EXPLO5 V6.04. The detonation velocities of the five energetic materials were found to be in the range of 6436 m s(-1) to 7759 m s(-1), and their detonation pressures are between 15.8 GPa and 24.6 GPa. Most of them exhibit much better detonation performance than TNT.
机译:使用3,6-双(3,5-二甲基吡唑-1-基)-1,2,4,5-四嗪(BT)和3,6-双(吡唑-)合成五种新的富含高能材料的材料1-基)-1,2,4,5-四嗪作为原料。通过单晶X射线衍射,FT-IR,质谱和元素分析综合表征材料。合成化合物显示出良好的实验密度,范围为1.59至1.70g cm(-3)。 DSC技术用于分析热稳定性。五种能量材料的分解温度范围为204.0至276.5℃。计算非等温动力学参数和地层焓值。此外,根据BAM方法进行摩擦敏感性测量,结果表明,该五种化合物可以被分类为不敏感的能量材料。为了更好地理解电子结构特征,进一步计算化合物1和2的静电电位(ESP)和天然键(NBOS)。通过Explo5 V6.04获得爆轰参数。发现五种能量材料的爆轰速度在6436m s(-1)至7759 m s(-1)的范围内,并且它们的爆轰压力在15.8GPa和24.6GPa之间。大多数人都表现出比TNT更好的爆炸性能。

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  • 来源
    《New Journal of Chemistry》 |2019年第47期|共10页
  • 作者单位

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beijing 100081 Peoples R China;

    China Shipbldg Ind Corp Res Inst 713 Zhengzhou 450015 Henan Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beijing 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beijing 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beijing 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beijing 100081 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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