离子键合
分子
热稳定性
二价
氧气平衡
热分解
化学
氧气
物理化学
化学物理
无机化学
离子
有机化学
作者
Bo Wu,Huiying Du,Ping Hu,Zhanyu Gao,Ruikai Liu,Chonghua Pei
标识
DOI:10.1080/07370652.2020.1737989
摘要
In recent years, the exploration of a practical strategy for novel energetic molecules with high energy and low sensitivity is very desirable but highly challenging. Novel ionic energetic molecules have attracted much attention in this area due to their prominent advantages including low sensitivities, high thermal stability, and excellent energy performances. Herein, five different ionic energetic molecules based on new monovalent and divalent 4-oxyl-3,5-dinitropyrazolate moieties with enhanced oxygen balance have been synthesized, characterized and evaluated as potential high-energy materials. Thermal stability, sensitivities and energy output test were measured and studied in detail. The heats of formation and energetic parameters were calculated by using Gaussian 09 suite of programs and EXPLO 5 code. The results suggest that all as-prepared new molecules exhibit good thermal stability with high decomposition temperature (3, 231°C; 5, 160°C; 6, 185°C; 7, 180°C; 8, 213°C), and relative low sensitivity (IS > 20 J, FS = 324 N). Inheriting the significant oxygen content of monovalent and divalent 4-oxyl-3,5-dinitropyrazolate moieties, they also possess good energy properties (vD = 8238 ~ 9208 m s−1, P = 26.8 ~ 36.7 GPa, Vo = 481.8 ~ 959.4 L kg−1), which make them competitive high-energy materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI