机制(生物学)
相变
固溶体
化学物理
固体表面
化学
气相
水蒸气
材料科学
相(物质)
化学工程
热力学
物理
有机化学
量子力学
工程类
作者
Ya Guo,Xuetong Cai,Fangbao Jiao,Zhicheng Guo,Qi Huang,Qi Zhang
摘要
Energetic materials often possess different polymorphs that exhibit distinguishable performances. As a typical energetic material, hexanitrohexaazaisowurtzitane (CL-20 or HNIW) is one of the most powerful explosives nowadays. Phase transition of CL-20 induced by ubiquitous water vapor leading to an increase in sensitivity and a decrease in energy level is a key bottleneck that limits the widespread application of CL-20-based explosives. Herein, the solid-solid phase transition behavior of CL-20 induced by water vapor and the related mechanism have been investigated. The results show that CL-20 undergoes an irreversible ε to α phase transition at an initial temperature of 104 °C in the presence of water vapor, much lower than that induced by thermal stimulation alone. According to XRD results and phase transition kinetics analysis, a four-parameter model is established to describe the phase transition process as a function of time. Theoretical calculations further support the promoting effect of water molecules on the phase transition. Based on experimental and theoretical results, a possible mechanism of steam-induced solid-solid phase transition of CL-20 is proposed. This work will provide a theoretical basis for the reliable design of CL-20-based energetic materials and also for the study on polymorphic transition inhibition of organic crystals to obtain the preferred phase.
科研通智能强力驱动
Strongly Powered by AbleSci AI