Li Long, Yan Zhenzhan, Tong Wenchao, Hu Chuan, Wang Shuang, Li Haojie, Yang Li, Han Ji-Min
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, P. R. China.
Beijing Institute of Technology Chongqing Innovation Center, Chongqing 401120, P. R. China.
Inorg Chem. 2024 Jan 8;63(1):474-484. doi: 10.1021/acs.inorgchem.3c03349. Epub 2023 Dec 15.
It is of great significance to develop efficient methods for preparing high-content modified nanoscale lead azide (LA) composites used in microinitiating devices. In this work, a structurally controllable salicylate-intercalated lead hydroxide with a nanoscale mesoporous structure is designed. Using it as a precursor, carbon-based lead azide (LA/C) and salicylate-based lead azide (LA/SA) are fabricated by the gas-solid azidation of the framework (GAF) method within 3 h, greatly reducing the preparation time of nano-LA composites. The characterizations of the composites demonstrate that the Pb in the precursors is transformed into nanoscale LA attached to the salicylate radical or its carbonized skeleton. Due to the unique embedded nanostructures and excellent electrical and thermal conductivity of salicylate-derived carbon materials, LA/C exhibits excellent electrostatic safety ( = 0.25 J) and flame sensitivity ( = 28 cm). The adjustable organic-inorganic ratio of intercalated hydroxides allows the LA content in LA/C to reach as high as 92.5%, enabling 6.50 mg of LA/C to successfully detonate secondary explosive CL-20 in a microinitiating device, demonstrating an amazing detonation ability superior to other reported LA complexes. The research provides a new perspective for the development of nanoscale LA composites with high LA content and appropriate sensitivity.
开发用于微起爆装置的高含量改性纳米级叠氮化铅(LA)复合材料的高效制备方法具有重要意义。在这项工作中,设计了一种具有纳米级介孔结构的结构可控的水杨酸盐插层氢氧化铅。以其为前驱体,通过骨架气固叠氮化(GAF)法在3小时内制备了碳基叠氮化铅(LA/C)和水杨酸盐基叠氮化铅(LA/SA),大大缩短了纳米LA复合材料的制备时间。复合材料的表征表明,前驱体中的Pb转化为附着在水杨酸根自由基或其碳化骨架上的纳米级LA。由于水杨酸盐衍生碳材料独特的嵌入纳米结构以及优异的电导率和热导率,LA/C表现出优异的静电安全性(=0.25 J)和火焰感度(=28 cm)。插层氢氧化物可调节的有机-无机比例使LA/C中的LA含量高达92.5%,6.50 mg的LA/C能够在微起爆装置中成功引爆二次炸药CL-20,展现出优于其他报道的LA配合物的惊人起爆能力。该研究为开发具有高LA含量和适当感度的纳米级LA复合材料提供了新的视角。