硝化作用
化学
反应机理
组合化学
量子化学
有机化学
计算化学
反应条件
硝基化合物
化学合成
有机合成
反应中间体
热稳定性
化学稳定性
化学反应
立体化学
亲电芳香族取代
机制(生物学)
硝酸
作者
Lu Hu,Xueping Yang,Xin Zhao,Junliang Liu,Meng xin Xue,Lu Hu,Siping Pang
标识
DOI:10.1021/acs.joc.5c02628
摘要
The nitration reaction plays a pivotal role in the construction and synthesis of energetic compounds. A new [5,6,5]-tricyclic compound bis([1,2,4]triazole)[1,5-b:3',4'-f]pyridazin-8-amine (4) was synthesized, and its nitration reaction was investigated thoroughly. The nitrated products 5·H2O, 6, 8, and 9 and rearrangement products 7 were obtained by nitration screening performed across a range of temperature gradients (0-100 °C), acid concentrations (HNO3 = 40% to 100%), nitration systems (HNO3 and HNO3/H2SO4), and reaction durations (1 h-12 h). A new methodology for azasydnone synthesis is established by the synthesis of 7. The nitration and rearrangement reaction mechanism was fully studied by quantum chemical calculations. Compound 9 has good thermal stability (Tdec = 222 °C), high detonation properties (v = 8554 m·s-1), and insensitivity (IS > 40 J; FS > 360 N). These findings provide deep mechanistic insights while broadening the synthetic landscape of fused-ring nitration.
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