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Explosives: Metal‐Organic Framework Templated Synthesis of Copper Azide as the Primary Explosive with Low Electrostatic Sensitivity and Excellent Initiation Ability (Adv. Mater. 28/2016)
Advanced Materials ( IF 27.4 ) Pub Date : 2016-07-21 , DOI: 10.1002/adma.201670192 Qianyou Wang 1 , Xiao Feng 2 , Shan Wang 2 , Naimeng Song 1 , Yifa Chen 2 , Wenchao Tong 1 , Yuzhen Han 2 , Li Yang 1 , Bo Wang 2
Advanced Materials ( IF 27.4 ) Pub Date : 2016-07-21 , DOI: 10.1002/adma.201670192 Qianyou Wang 1 , Xiao Feng 2 , Shan Wang 2 , Naimeng Song 1 , Yifa Chen 2 , Wenchao Tong 1 , Yuzhen Han 2 , Li Yang 1 , Bo Wang 2
Affiliation
On page 5837, L. Yang, B. Wang, and co‐workers describe a metal–organic framework (MOF) templating method to synthesize copper azide uniformly anchored in a 3D interconnected carbon matrix and evenly spaced by the electron‐conductive joints. This strategy sheds light on the preparation of powerful yet safe primary explosives and fulfills the need for controllable explosive systems.
中文翻译:
炸药:金属-有机框架模板合成的叠氮化铜作为主要炸药,具有低静电敏感度和出色的引发能力(高级副材料。28/ 2016)
在L. Yang,B. Wang和同事的第5837页中,他们描述了一种金属-有机骨架(MOF)模板化方法,用于合成均匀锚固在3D互连碳矩阵中并由电子导电接头均匀隔开的叠氮化铜。该策略为准备强大而安全的主要炸药提供了便利,并满足了对可控炸药系统的需求。
更新日期:2016-07-21
中文翻译:
炸药:金属-有机框架模板合成的叠氮化铜作为主要炸药,具有低静电敏感度和出色的引发能力(高级副材料。28/ 2016)
在L. Yang,B. Wang和同事的第5837页中,他们描述了一种金属-有机骨架(MOF)模板化方法,用于合成均匀锚固在3D互连碳矩阵中并由电子导电接头均匀隔开的叠氮化铜。该策略为准备强大而安全的主要炸药提供了便利,并满足了对可控炸药系统的需求。