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Theoretical Study on the High Energy Density Compound Hexanitrohexaazatricyclotetradecanedifuroxan
作者姓名:邱玲  肖鹤鸣  朱卫华  居学海  贡雪东
作者单位:Institute for Computation in Molecular and Material Science, School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, China
基金项目:Project supported by the National Natural Science Foundation of China (Nos. 10576030, 10576016) and the Innovation Project for Postgraduates in the Universities of Jiangsu Province (No. AD20116).
摘    要:Density functional theory (DFT) has been employed to study the molecular geometries, electronic structures, infrared (IR) spectra, and thermodynamic properties of the high energy density compound hexanitrohexaazatricyclotetradecanedifuroxan (HHTTD) at the B3LYP/6-31G^** level of theory. The calculated results show that there are four conformational isomers (α, β, γ and δ) for HHTTD, and the relative stabilities of four conformers were assessed based on the calculated total energies and the energy-gaps between the frontier molecular orbitals. The computed harmonic vibrational frequencies are in reasonable agreement with the available experimental data. Thermodynamic properties derived from the IR spectra on the basis of statistical thermodynamic principles are linearly correlated with the temperature. Detonation performances were evaluated by using the Kamlet-Jacobs equations based on the calculated densities and heats of formation. It was found that four HHTTD isomers with the predicted densities of ca. 2 g·cm^-3, detonation velocities near 10 km·s^-1, and detonation pressures over 45 GPa, may be novel potential candidates of high energy density materials (HEDM). These results may provide basic information for the molecular design of HEDM.

关 键 词:六硝基六氮杂三环十四二呋喃  密度泛函理论  红外光谱  热力学性质  爆炸性能
收稿时间:2005-09-13
修稿时间:2005-09-132006-02-24

Theoretical Study on the High Energy Density Compound Hexanitrohexaazatricyclotetradecanedifuroxan
QIU, Ling, XIAO, He-Ming, ZHU, Wei-Hua, JU, Xue-Hai, GONG, Xue-Dong.Theoretical Study on the High Energy Density Compound Hexanitrohexaazatricyclotetradecanedifuroxan[J].Chinese Journal of Chemistry,2006,24(11):1538-1546.
Authors:QIU  Ling  XIAO  He-Ming  ZHU  Wei-Hua  JU  Xue-Hai  GONG  Xue-Dong
Abstract:Density functional theory (DFT) has been employed to study the molecular geometries, electronic structures, infrared (IR) spectra, and thermodynamic properties of the high energy density compound hexanitrohexaazatricyclotetradecanedifuroxan (HHTTD) at the B3LYP/6‐31G** level of theory. The calculated results show that there are four conformational isomers (α, β, γ and δ) for HHTTD, and the relative stabilities of four conformers were assessed based on the calculated total energies and the energy‐gaps between the frontier molecular orbitals. The computed harmonic vibrational frequencies are in reasonable agreement with the available experimental data. Thermodynamic properties derived from the IR spectra on the basis of statistical thermodynamic principles are linearly correlated with the temperature. Detonation performances were evaluated by using the Kamlet‐Jacobs equations based on the calculated densities and heats of formation. It was found that four HHTTD isomers with the predicted densities of ca. 2 g·cm?3, detonation velocities near 10 km·s?1, and detonation pressures over 45 GPa, may be novel potential candidates of high energy density materials (HEDM). These results may provide basic information for the molecular design of HEDM.
Keywords:hexanitrohexaazatricyclotetradecanedifuroxan  density functional theory  infrared spectra  thermodynamic property  detonation performance
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