放热反应
材料科学
结合能
碳纤维
复合数
固体力学
复合材料
化学工程
物理化学
有机化学
化学
原子物理学
物理
工程类
作者
Qiong Wu,Zhonghui Teng,Weihua Zhu
标识
DOI:10.1007/s10853-022-07283-9
摘要
The safety of energetic materials is very important to reduce accidents. Thus, for the first time, the smallest all carbon compound cyclo[18]carbon (C18) was used to develop new energetic composite materials to desensitize two most powerful energetic materials (HMX and CL-20). Based on the designed composites, the structures, interaction and binding strength, and safety performance of them were studied using DFT and ESP methods. The desensitizing mechanism was explored also. The results showed that the binding process of C18 with HMX or CL-20 was exothermic and spontaneous thermodynamically, and the binding energy of HMX/C18 and CL-20/C18 composites was negative, showing the high possibility of binding C18 with HMX or CL-20 to form energetic composite materials. The impact sensitivity of HMX and CL-20 could be reduced more than 40% through shortening the N-NO2 bonds, decreasing the number of positive ESP values and dispersing the region with high ESP values. C18 could also reduce the electrostatic sensitivity of them by decreasing the ability to electron withdrawing, enhancing the ability to electron donating and transition, and changing the electron-induced reaction sites from HMX or CL-20 to C18. In all, it is worth to form new HMX/C18 and CL-20/C18 energetic composite materials with superior safety performance.
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