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Molecular dynamic simulations on TKX-50/HMX cocrystal

机译:TKX-50 / HMX共晶体的分子动力学模拟

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Dihydroxylammonium 5,5′-bistetrazole-1,1′-diolate (TKX-50) is a newly synthesized explosive with excellent comprehensive properties. Cyclotetramethylenetetranitramine (HMX) is currently one of the highest energy explosives used around the world. TKX-50/HMX cocrystal can improve the defects of TKX-50 and HMX and vastly expand their application scope. TKX-50 and HMX supercell structures and TKX-50/HMX cocrystal structures were established based on their crystal cell parameters and the formation mechanism of the cocrystals, respectively. The binding energy, radial distribution function (RDF), X-ray powder diffraction (XRD), cohesive energy density (CED) and mechanical properties were simulated based on the equilibrium structures of models via molecular dynamics (MD) simulations. The calculated results indicate that the TKX-50/HMX cocrystal forms as a new structure under the intermolecular forces, and the cocrystal structures of TKX-50 substituted by HMX on its slow-growing facets are more stable. Moreover, the cocrystal structure has greatly improved the high sensitivity defect of HMX and the mechanical properties of TKX-50 and HMX; thus the cocrystal will be more likely to be used widely in the energetic materials field.
机译:5,5'-双四唑-1,1'-二醇盐二羟基铵(TKX-50)是一种综合性能优异的新型合成炸药。环四亚甲基四硝胺(HMX)目前是世界上使用的能量最高的炸药之一。 TKX-50 / HMX共晶可改善TKX-50和HMX的缺陷,大大扩展了其应用范围。分别根据其晶胞参数和共晶形成机理,建立了TKX-50和HMX超晶胞结构以及TKX-50 / HMX共晶结构。基于分子动力学模型的平衡结构,对结合能,径向分布函数(RDF),X射线粉末衍射(XRD),内聚能密度(CED)和力学性能进行了模拟)模拟。计算结果表明,在分子间作用力作用下,TKX-50 / HMX共晶形成了新的结构,而在慢速生长面上被HMX取代的TKX-50的共晶结构更加稳定。此外,共晶结构极大地改善了HMX的高灵敏度缺陷以及TKX-50和HMX的机械性能。因此,共晶将更有可能在高能材料领域得到广泛使用。

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