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Dinitrophenyl-oxadiazole compounds:Design strategy,synthesis,and properties of a series of new melt-cast explosives
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作者 Bao-long Kuang Ting-wei Wang +6 位作者 Cong Li Mou Sun qamar-un-nisa tariq Chao Zhang Zhi-ming Xie Zu-jia Lu Jian-guo Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期100-107,共8页
Melt-cast explosives are the most widely used energetic materials in military composite explosives,researchers have been unremittingly exploring high-energy and insensitive melt-cast explosives.In this work,a series o... Melt-cast explosives are the most widely used energetic materials in military composite explosives,researchers have been unremittingly exploring high-energy and insensitive melt-cast explosives.In this work,a series of dinitrophenyl-oxadiazole compounds were designed and prepared.These compounds have an ideal low melting point(80-97℃),good detonation performance(detonation velocity D=6455-6971 m/s,detonation pressure P=18-19 GPa)and extreme insensitive nature(impact sensitivity≥60 J,friction sensitivity>360 N).All these compounds were well characterized by nuclear magnetic resonance,fourier transform infrared spectroscopy,elemental analysis.Compounds 2,3 were unambiguously confirmed by X-ray single crystal diffraction analysis.As a result,their overall properties are superior to traditional melt-cast explosives trinitrotoluene(TNT)and dinitroanisole(DNAN)which may have excellent potential applications in insensitive melt-cast explosives. 展开更多
关键词 Dinitrophenyl-oxadiazole Melt-cast explosive Low sensitivity
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Nitro-tetrazole based high performing explosives:Recent overview of synthesis and energetic properties 被引量:4
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作者 Saira Manzoor qamar-un-nisa tariq +1 位作者 Xin Yin Jian-Guo Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第6期1995-2010,共16页
Heterocyclic skeleton(Azoles)and different energetic groups containing high performing explosives are highly emerged in recent years to meet the challenging requirements of energetic materials in both military and civ... Heterocyclic skeleton(Azoles)and different energetic groups containing high performing explosives are highly emerged in recent years to meet the challenging requirements of energetic materials in both military and civilian applications with improved performance.For this purpose tetrazole(Azole)is identified as an attractive heterocyclic backbone with energetic functional groups nitro(-NO_(2)),nitrato(-ONO_(2)),nitrimino(-NNO_(2)),and nitramino(eNHeNO_(2))to replace the traditionally used high performing explosives.The tetrazole based compounds having these energetic functional groups demonstrated advanced energetic performance(detonation velocity and pressure),densities,and heat of formation(HOF)and became a potential replacement of traditional energetic compounds such as RDX.This review presents a summary of the recently reported nitro-tetrazole energetic compounds containing poly-nitro,di/mono-nitro,nitrato/nitramino/nitrimino,bridged/bis/di tetrazole and nitro functional groups,describing their preparation methods,advance energetic properties,and further applications as highperforming explosives,especially those reported in the last decade.This review aims to provide a fresh concept for designing nitro-tetrazole based high performing explosives together with major challenges and perspectives. 展开更多
关键词 TETRAZOLE Energetic materials Functional groups HETEROCYCLIC High-performing explosives
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Recent advances on the nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials 被引量:1
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作者 Wen-Li Cao qamar-un-nisa tariq +2 位作者 Zhi-Min Li Jun-Qing Yang Jian-Guo Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第3期344-367,共24页
This review covers recent advances in the synthesis and energetic performance of nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials.These materials comprise of 1,2,4-oxadiazole subunit as a key structural... This review covers recent advances in the synthesis and energetic performance of nitrogen-rich 1,2,4-oxadiazole-azoles-based energetic materials.These materials comprise of 1,2,4-oxadiazole subunit as a key structural motif linked to different nitrogen-rich or nitrogen-oxygen azoles:tetrazole,furazan,furoxan,1,3,4-oxadiazole,pyrazole,and triazole.Particular attention is devoted to the introduction of various energetic groups including nitro,nitramino,azo,azoxy,dinitromethyl,trinitroethyl moieties,and their combination.The physicochemical and available performance parameters including density,decomposition temperature,heat of formation,detonation pressure,detonation velocity,impact sensitivity,and friction sensitivity of typical energetic compounds are also provided and analyzed.Eventually,it was obtained that several screened compounds exhibit superior detonation properties and outstanding insensitivities,which can be classified as a new family of high-performance energetic materials.Additionally,1,2,4-oxadiazole-azoles-based energetic materials still have many thorough works to further exploited and studied,expecting to get very promising insensitive high explosives for practical application and industrialization. 展开更多
关键词 1 2 4-Oxadiazole-azoles Triazole TETRAZOLE FURAZAN Energetic materials FUROXAN
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Recent advances in the synthesis and energetic properties of potassium-based potential green primary explosives 被引量:1
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作者 qamar-un-nisa tariq Saira Manzoor +2 位作者 Maher-un-Nisa tariq Wen-Li Cao Jian-Guo Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第11期1945-1959,共15页
Primary explosives are utilized as a reliable initiator for secondary explosives in an extensive range of military and civilian operations. Heavy-metal-based primary explosives are moderate performing, more sensitive,... Primary explosives are utilized as a reliable initiator for secondary explosives in an extensive range of military and civilian operations. Heavy-metal-based primary explosives are moderate performing, more sensitive, and environmentally hazardous, posing a direct and indirect threat to health and safety.Therefore, heavy-metal-based primaries have been replaced by environment-friendly metal-based primary explosives, such as potassium complexes. This review presents not only a summary of the current progress of new-generation potassium-based primary explosives and their methods of preparation, energetic properties, and applications, but also a further comparison with traditional primary explosives. In addition, this work discusses the necessity of heavy metal-free primary explosives and the major challenges faced in replacing traditional primary explosives. 展开更多
关键词 Green primary explosives Heterocyclic compounds SYNTHESIS Energetic properties
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