Purification, crystal structure and properties of azoxytriazolone (AZTO)

Tianlong Zhou , Jiaxu Gong , Mingzhen Xie , Bozhou Wang , Yifan Jiang , Jiaheng Wang , Jie Zhou , Linzhi Zhong , Yatang Dai
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Abstract

In this work, the azoxytriazolone (AZTO) was synthesized by electrochemical reduction 5-nitro-1,2,4-triazol-3-one (NTO) under different types of electrolytes which were Na2SO4 and H2SO4. By comparing the yield of AZTO/azoTO synthesized under different electrolyte conditions, the work found that sulfuric acid as the electrolyte has a positive effect on the synthesis of AZTO. On this basis, the high-concentration AZTO was prepared by regulating the concentrations of sulfuric acid (0.05M, 0.1M, 0.5M, 1M). Finally, by introducing an appropriate amount of NaOH, we successfully achieved the separation and purification of AZTO from the mixture of AZTO and azoTO. In addition, single crystal AZTO was also prepared in this experiment to test its crystal structure, which illustrated that the crystal density of AZTO is 1.902 g/cm3 at 193 K, belonging to the monoclinic crystal system with space group P21/n. The thermal properties results of AZTO showed that the thermal stability properties of AZTO were affected by AZTO/azoTO ratio, and the thermal decomposition peak of pure AZTO is 352°C when the content of azoTO is zero. On the contrary, the BAM susceptibility tester test demonstrated the impact susceptibility is 30 J and the friction susceptibility is greater than 360 N of AZTO, which are unaffected on azoTO. According to the K-J empirical formula, the blasting velocity and detonation pressure of AZTO were 7713.5 m/s and 26.1 GPa, respectively. The influences of different types of electrolytes and sulfuric acid concentrations on the yield of AZTO were evaluated, and the relevant reaction mechanism of electrochemical synthesis of AZTO and azoTO was supplemented in this paper.

Abstract Image

氮氧三唑酮(AZTO)的纯化、晶体结构与性质
本文以Na2SO4和H2SO4为电解质,采用电化学还原法合成了5-硝基-1,2,4-三唑-3-酮(NTO)。通过比较不同电解质条件下合成AZTO/azoTO的产率,研究发现硫酸作为电解质对AZTO的合成有积极的影响。在此基础上,通过调节硫酸浓度(0.05M、0.1M、0.5M、1M)制备高浓度AZTO。最后,通过引入适量的NaOH,我们成功地从AZTO和azoTO的混合物中分离纯化了AZTO。此外,本实验还制备了单晶AZTO,对其晶体结构进行了测试,结果表明,在193 K时,AZTO的晶体密度为1.902 g/cm3,属于空间群为P21/n的单斜晶系。AZTO的热性能结果表明,AZTO/azoTO的热稳定性受到AZTO/azoTO比的影响,当azoTO含量为零时,纯AZTO的热分解峰为352℃。相反,BAM敏感性试验表明AZTO的冲击敏感性为30 J,摩擦敏感性大于360 N,对AZTO的影响较小。根据K-J经验公式,AZTO的爆破速度为7713.5 m/s,爆轰压力为26.1 GPa。考察了不同类型电解质和硫酸浓度对AZTO产率的影响,并补充了电化学合成AZTO和azoTO的相关反应机理。
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