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Single-crystal-to-single-crystal MOF encapsulation of copper azide to prepare laser-sensitive primary explosives
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作者 Ruibing Lv Pengyang Pan +4 位作者 Zhenghang Luo Ying Wang Quancheng Liu Hu Deng Qi Zhang 《Inorganic Chemistry Frontiers》 2024年第23期8235-8245,共11页
Laser-sensitive primary explosives(LSPEs)are crucial material bases of advanced laser initiation technology.Copper azide(CA),a primary explosive with excellent detonation properties,is limited in preparation and appli... Laser-sensitive primary explosives(LSPEs)are crucial material bases of advanced laser initiation technology.Copper azide(CA),a primary explosive with excellent detonation properties,is limited in preparation and application owing to its extremely high sensitivity.Thus,incorporating CA into LSPEs relies on precise desensitisation strategies.This study successfully implemented a strategy involving sensitive-unit molecular-scale encapsulation.A 2D energetic metal–organic framework(EMOF)[Cu(ATRZ)(N_(3))_(2)]_(n)(CA-ATRZ)(ATRZ=4,4′-azo-1,2,4-triazole)was designed and synthesized via a safe and facile single-crystal-to-single-crystal(SCSC)transformation from a 3D EMOF[Cu(ATRZ)_(3)(NO_(3))_(2)]_(n).Leveraging its distinctive structural attributes of encapsulated confinement,CA-ATRZ is substantially improved in terms of safety compared to CA,while maintaining its superior detonation performance.Furthermore,CA-ATRZ obtained by combining MOFs with CA has outstanding ultrafast direct laser initiation characteristics,is free of toxic metals and perchlorate,has high initiating ability,and has decent thermal stability.This strategy could pave the way for developing advanced high-energy LSPEs. 展开更多
关键词 MOF encapsulation d energetic metal organic framework emof cu atrz n n Laser sensitive primary explosives primary explosives lspes Single crystal single crystal advanced laser initiation technologycopper azide ca precise desensitisation strategiesthis Copper azide
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