CHINESE JOURNAL OF ENERGETIC MATERIALS
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Calculated Thermodynamic Properties of Energetic 1,1-Diamino-2, 2-dinitroethene (FOX-7) at the Finite Temperature
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1.Department of Physics,Taiyuan Normal University,Jinzhong 030619,China;2.Institute of Computational and Applied Physics,Taiyuan Normal University, Jinzhong 030619, China;3.Key Laboratory of Materials Modification by Laser, Ion and Electron Beams (Dalian University of Technology), Ministry of Education, Dalian 116024, China

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    Abstract:

    To study the fundamental physical properties and intermolecular interaction of energetic materials under the loading temperature, the first-principle calculation was performed combined with zero-point energy and temperature effect corrections. The accuracy of lattice parameters at experiment temperature (173 K) can be significantly improved, and the deviations between the calculated lattice parameters and available experimental data are within 1%. The unit cell volume change with temperature is relatively reasonable compared with the experimental value at 0-500 K, and their deviation is mainly from the lack of interactions between phonons. Furthermore, the basic thermodynamic properties such as heat capacity, entropy and bulk modulus were predicted, and the results indicate that the lattice parameters and thermal expansion coefficient of FOX-7 have strong anisotropy in 0-500 K. Especially, the thermal expansion coefficient of interlayer direction is higher than that of inner layer direction, which is closely related to the molecular configuration and stacking. Importantly, when the temperature reaches 200 K, the shrinkage of thermal expansion coefficient of FOX-7 is related to the rotation of NO2 group. The NO2 group would regulate the intermolecular interaction by changing the dihedral angle with the molecular plane, thereby triggering potential phase transformation of FOX-7. In addition, the bulk modulus under the adiabatic conditions is consistent with the experimental values reasonably, and the evolution of adiabatic bulk modulus with temperature reflects the softening behavior of FOX-7 at the finite temperature. With the increase of temperature, the calculated heat capacity and entropy increase gradually, showing obvious numerical differences under the constant volume and pressure due to the anharmonic effect.

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范俊宇,苏艳,赵纪军. FOX-7在有限温度下的热力学性质的理论计算[J].含能材料,2022,30(12):1245-1251.
FAN Jun-yu, SU Yan, ZHAO Ji-jun. Calculated Thermodynamic Properties of Energetic 1,1-Diamino-2, 2-dinitroethene (FOX-7) at the Finite Temperature[J]. Chinese Journal of Energetic Materials,2022,30(12):1245-1251.

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History
  • Received:May 25,2022
  • Revised:September 26,2022
  • Adopted:September 22,2022
  • Online: September 23,2022
  • Published: December 25,2022