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Thermodynamic Properties and Detonation Performance forNitro Derivatives of THDCPD by Density Functional Theory
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    Abstract:

    The geometries of tetrahydrodicyclopentadienes(THDCPD) and its derivatives were optimized at the B3LYP/6-31G level, vibration frequency analysis was also involved. The heat capacity and enthalpy at different temperatures were obtained by statistic thermodynamics. In order to calculate standard enthalpies of formation for the derivatives of THDCPD, isodesmic reactions were designed. The average molar volume and theoretical density were estimated using the Monte-Carlo method based on 0.001 e·bohr-3 density space. Furthermore, the detonation velocity and pressure of the derivatives were estimated by the Kamlet-Jacbos equation. Results show that the total energies with the number of nitro groups are linear, and the derivatives of endo-THDCPD is more stable than the exo ones. The possible mechanism may be started by C—NO2 bond breaking, not the homogeneous cleavage of framework C—C bond. With the temperature increasing, the heat capacity and enthalpy increase,and the increments of heat capacity is degressive,which is conversed to the enthalpy. Also,the detonation velocity and pressure increase evidently with the increasing of the nitro groups′ number.

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宋婧,李春迎,杨建明,等.四氢双环戊二烯硝基衍生物的热力学性质与爆轰性能的理论研究[J].含能材料,2008,16(4):368-375.
SONG Jing, LI Chun-ying, YANG Jian-ming, et al. Thermodynamic Properties and Detonation Performance forNitro Derivatives of THDCPD by Density Functional Theory[J]. Chinese Journal of Energetic Materials,2008,16(4):368-375.

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History
  • Received:January 17,2008
  • Revised:
  • Adopted:
  • Online: May 06,2011
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