Jiang Hanyu, Wang Xuanjun, Xu Siyu, Yu Jin, Zhang Zihao, Mu Xiaogang, Huang Taizhong, Zhao Fengqi
Zhijian Laboratory, Rocket Force University of Engineering, Xi'an 710038, China.
National Key Laboratory of Energetic Materials, Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
ACS Omega. 2025 Apr 7;10(14):14042-14051. doi: 10.1021/acsomega.4c10924. eCollection 2025 Apr 15.
The 1,1-diamino-2,2-dinitroethylene (FOX-7) has been adopted in high-energy explosives. To further improve the thermal safety and detonation performance of FOX-7, a microfluidic crystallization platform with a swirl-shaped chip was employed to prepare ultrafine FOX-7. Results show that the crystal structure of FOX-7 could be precisely controlled by adjusting the operational parameters of microfluidic. The microfluidic techniques prepared superfine FOX-7 exhibit a consistent smaller particle size, narrower particle size distribution, reduced crystal defects, and enhanced sphericity structure. On the other hand, the thermochemical properties of FOX-7 are also improved. The thermal decomposition temperature and critical thermal explosion temperature of ultrafine FOX-7 are increased by 24.6 and 22.1 °C, respectively. The thermal stability, energy release efficiency, and combustion of the microfluidic recrystallization method prepared FOX-7 are greatly improved. This research presents a secure, effective, and eco-friendly methodology for the preparation and manipulation of ultrafine FOX-7 crystals.
1,1-二氨基-2,2-二硝基乙烯(FOX-7)已被应用于高能炸药中。为了进一步提高FOX-7的热安全性和爆轰性能,采用了带有涡旋形芯片的微流控结晶平台来制备超细FOX-7。结果表明,通过调节微流控的操作参数,可以精确控制FOX-7的晶体结构。微流控技术制备的超细FOX-7呈现出一致的更小粒径、更窄的粒径分布、减少的晶体缺陷以及增强的球形结构。另一方面,FOX-7的热化学性质也得到了改善。超细FOX-7的热分解温度和临界热爆炸温度分别提高了24.6℃和22.1℃。微流控重结晶法制备的FOX-7的热稳定性、能量释放效率和燃烧性能都得到了极大的改善。本研究提出了一种安全、有效且环保的方法来制备和处理超细FOX-7晶体。