Wang Luoluo, Zhai Lianjie, She Weiqing, Wang Minchang, Zhang Junlin, Wang Bozhou
State Key Laboratory of Fluorine & Nitrogen Chemicals, Xi'an Modern Chemistry Research Institute, Xi'an, China.
Front Chem. 2022 Mar 17;10:871684. doi: 10.3389/fchem.2022.871684. eCollection 2022.
The structural units of amino-/cyano-substituted furazans and furoxans played significant roles in the synthesis of nitrogen-rich energetic compounds. This account focused on the synthetic strategies toward nitrogen-rich energetic compounds through the transformations based on cyanofurazan/furoxan structures, including 3-amino-4-cyanofurazan, 4-amino-3-cyano furoxan, 3,4-dicyanofurazan, and 3,4-dicyanofuroxan. The synthetic strategies toward seven kinds of nitrogen-rich energetic compounds, such as azo (azoxy)-bridged, ether-bridged, methylene-bridged, hybrid furazan/furoxan-tetrazole-based, tandem furoxan-based, hybrid furazan-isofurazan-based, hybrid furoxan-isoxazole-based and fused framework-based energetic compounds were fully reviewed, with the corresponding reaction mechanisms toward the nitrogen-rich aromatic frameworks and examples of using the frameworks to create high energetic substances highlighted and discussed. The energetic properties of typical nitrogen-rich energetic compounds had also been compared and summarized.
氨基/氰基取代的呋咱和氧化呋咱的结构单元在富氮含能化合物的合成中发挥了重要作用。本综述聚焦于通过基于氰基呋咱/氧化呋咱结构的转化来合成富氮含能化合物的策略,这些结构包括3-氨基-4-氰基呋咱、4-氨基-3-氰基氧化呋咱、3,4-二氰基呋咱和3,4-二氰基氧化呋咱。全面综述了七种富氮含能化合物的合成策略,如偶氮(氧化偶氮)桥连、醚桥连、亚甲基桥连、呋咱/氧化呋咱-四唑基杂化、串联氧化呋咱基、呋咱-异呋咱基杂化、氧化呋咱-异恶唑基杂化和稠环骨架基含能化合物,并重点突出和讨论了针对富氮芳香骨架的相应反应机理以及使用这些骨架制备高能物质的实例。还对典型富氮含能化合物的能量性质进行了比较和总结。