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Theoretical studies on the crystal structure, thermodynamic properties, detonation performance and thermal stability of cage- tetranitrotetraazabicyclooctane as a novel high energy density compound

机译:笼型四硝基四氮杂双环辛烷新型高能密度化合物的晶体结构,热力学性质,爆轰性能和热稳定性的理论研究

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The B3LYP/6-31G (d) method of density functional theory (DFT) was used to study molecular geometry, electronic structure, infrared spectrum (IR) and thermodynamic properties. The heat of formation (HOF) and calculated density were estimated to evaluate the detonation properties using Kamlet-Jacobs equations. Thermal stability of 3,5,7,10,12,14,15,16-octanitro- 3,5,7,10,12,14,15,16-octaaza-heptacyclo[7.5.1.1~(2,8).0~(1,11).0~(2,6).0~(4,13).0~(6,11)]hexadecane (cage-tetranitrotetraazabicyclooctane) was investigated by calculating the bond dissociation energy (BDE) at unrestricted B3LYP/6-31G (d) level. The calculated results show that the N-NO_2 bond is a trigger bond during thermolysis initiation process. The crystal structure obtained by molecular mechanics (MM) methods belongs to Pna2_1 space group, with cell parameters a = 12.840 ?, b = 9.129 ?, c = 14.346 ?, Z = 6 and ρ = 2.292 g·cm~(-3). Both the detonation velocity of 9.96 km·s~(-1) and the detonation pressure of 47.47 GPa are better than those of CL-20. According to the quantitative standard of energetics and stability, as a high energy density compound (HEDC), cage-tetranitrotetraazabicyclooctane essentially satisfies this requirement.
机译:密度泛函理论(DFT)的B3LYP / 6-31G(d)方法用于研究分子几何,电子结构,红外光谱(IR)和热力学性质。使用Kamlet-Jacobs方程估算地层热(HOF)和计算密度,以评估爆轰性能。 3,5,7,10,12,14,15,16-八硝基-3,5,7,10,12,14,15,16-八氮杂-七环的热稳定性[7.5.1.1〜(2,8)通过计算键离解能(BDE)研究了.0〜(1,11).0〜(2,6).0〜(4,13).0〜(6,11)]十六烷(笼-四硝基四氮杂双环辛烷)不受限制的B3LYP / 6-31G(d)水平。计算结果表明,N-NO_2键是热解引发过程中的触发键。通过分子力学方法得到的晶体结构属于Pna2_1空间群,晶胞参数a = 12.840?,b = 9.129?,c = 14.346?,Z = 6和ρ= 2.292 g·cm〜(-3) 。爆炸速度为9.96 km·s〜(-1),爆炸压力为47.47 GPa,均优于CL-20。根据能量和稳定性的定量标准,笼型四硝基四氮杂双环辛烷作为一种高能量密度化合物(HEDC)基本可以满足这一要求。

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