Novel energetic salts based on nitrogen-rich fused ring cations: Synthesis, characterization and infrared laser ignition property

Lan Jiang , Ruibing Lv , Jinxing Wang , Siwei Song , Yongdong Chen , Xingbo Ge , Kangcai Wang , Qinghua Zhang
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引用次数: 1

Abstract

In this work, four energetic nitrates, i.e., 4,7-diamino-1H-[1,2,3]triazolo[4,5-d]pyridazin-5-ium nitrate (1), 2,6-diamino-1‑hydroxy-9H-purine-1,7-diium nitrate (2), 6-amino-[1,2,4]triazolo[4,3-b][1,2,4,5]tetrazin-2-ium nitrate (3) and 3,6-diamino-[1,2,4]triazolo[4,3-b][1,2,4,5]tetrazin-2-ium nitrate (4), were prepared and comprehensively characterized. The X-ray diffraction results indicated that compounds 1–4 had different layered structures with the densities in the range of 1.616–1.805 g/cm3. The highest density value of 1.805 g/cm3 was represented in compound 2, which was higher than that of most other nitrates. Moreover, compounds 1–4 had good thermal stabilities, the decomposition temperatures were in the ranged of 165–181 °C, which made them have great potential to further develop. The calculated detonation velocities and detonation pressures of these compounds were in the range of 7678–8925 m/s, and 21.96–32.39 GPa, respectively. The greatest detonation velocity and detonation pressure were observed in compound 3. The specific impulses of these compounds were in the range of 199.8–244.9 m/s. Notably, compound 1 had near infrared laser (λ = 1064 nm) ignition capacity, which was the first example of CHNO based energetic compound with near infrared laser ignition performance.

Abstract Image

基于富氮熔融环阳离子的新型能盐:合成、表征及红外激光点火性能
本文制备了4,7-二氨基- 1h -[1,2,3]三唑[4,5-d]吡嗪-5-硝酸铵(1)、2,6-二氨基-1 -羟基- 9h -嘌呤-1,7-硝酸铵(2)、6-氨基-[1,2,4]三唑[4,3-b][1,2,4,5]四锌-2-硝酸铵(3)和3,6-二氨基-[1,2,4]三唑[4,3-b][1,2,4,5]四锌-2-硝酸铵(4)4种含能硝酸盐,并对其进行了全面表征。x射线衍射结果表明,化合物1 ~ 4具有不同的层状结构,密度范围为1.616 ~ 1.805 g/cm3。化合物2的密度值最高,为1.805 g/cm3,高于其他大多数硝酸盐。化合物1 ~ 4具有良好的热稳定性,分解温度在165 ~ 181℃范围内,具有很大的开发潜力。这些化合物的爆轰速度和爆轰压力分别在7678 ~ 8925 m/s和21.96 ~ 32.39 GPa之间。化合物3的爆速和爆压最大。这些化合物的比脉冲在199.8 ~ 244.9 m/s之间。值得注意的是,化合物1具有近红外激光(λ = 1064 nm)点火能力,是首个具有近红外激光点火性能的CHNO基含能化合物。
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