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Intermolecular interactions, thermodynamic properties, crystal structure, and detonation performance of HMX/NTO cocrystal explosive

机译:HMX / NTO共晶炸药的分子间相互作用,热力学性质,晶体结构和爆轰性能

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Previous studies have shown that the design of cocrystal explosives is one of the most promising approaches to decrease the sensitivity and maintain the detonation performance of existing explosives. As is well-known, octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX) is a high energy density material (HEDM). But the application of HMX is limited, due to its high sensitivity. Thus, an insensitive explosive 5-nitro-1,2,4-triazol-3-one (NTO) is proposed as a cocrystal former (CCF) to cocrystallize with HMX in the present work. The binding energies, heat of formations (HOFs), thermodynamic properties, atoms in molecules, and natural bond orbital analysis of four HMX/NTO complexes have been calculated using density functional theory methods, including meta-hybrid functional (M062X) and dispersion-corrected density functionals (B97D, ωB97XD). In addition, the crystal structure of HMX/NTO cocrystal has been investigated using Monte Carlo simulation and first principles methods. The HMX/NTO cocrystal is most likely to crystallize in triclinic crystal system with P1 space group, and corresponding cell parameters are Z = 2, a = 9.06 ?, b = 8.19 ?, c = 10.27 ?, α = 81.94°, β = 98.42°, γ = 82.03°, and ρ = 1.92 g/cm~3. The detonation velocity and detonation pressure of HMX/NTO cocrystal are 8.73 km/s and 35.14 GPa, respectively, a little lower than those of HMX. Finally, bond dissociation energies (BDEs) of the weakest trigger bond in HMX/NTO complexes are calculated. The results show that HMX/NTO complexes are thermally stable and meet the thermal requirement of HEDMs (BDE > 120 kJ/mol).
机译:先前的研究表明,共晶炸药的设计是降低现有炸药的敏感性和维持其爆炸性能的最有前途的方法之一。众所周知,八氢-1,3,5,7-四硝基-1,3,5,7-四唑啉(HMX)是高能量密度材料(HEDM)。但是由于HMX的高灵敏度,其应用受到限制。因此,在本工作中,提出了一种不敏感的爆炸物5-硝基-1,2,4-三唑-3-酮(NTO)作为共结晶形成剂(CCF)与HMX共结晶。四个HMX / NTO配合物的结合能,形成热(HOF),热力学性质,分子中的原子以及自然键轨道分析已使用密度泛函理论方法进行了计算,包括亚杂化泛函(M062X)和色散校正密度泛函(B97D,ωB97XD)。另外,已经使用蒙特卡罗模拟和第一原理方法研究了HMX / NTO共晶体的晶体结构。 HMX / NTO共晶体最可能在具有P1空间群的三斜晶系​​晶体中结晶,并且相应的晶胞参数为Z = 2,a = 9.06?,b = 8.19?,c = 10.27?,α= 81.94°,β= 98.42°,γ= 82.03°,ρ= 1.92克/厘米〜3。 HMX / NTO共晶的爆轰速度和爆轰压力分别为8.73 km / s和35.14 GPa,略低于HMX。最后,计算了HMX / NTO络合物中最弱的触发键的键解离能(BDE)。结果表明,HMX / NTO配合物是热稳定的,并且满足HEDM(BDE> 120 kJ / mol)的热学要求。

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