CHINESE JOURNAL OF ENERGETIC MATERIALS
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Influence of the H2O2 and H2O Molecules Caged in α-CL-20 and CL-20/H2O2 on Diffusion Characteristics and Thermal Decomposition by Molecular Dynamics Simulation
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1.Institute of Chemical Materials, China Academy of Engineering Physics, Mianyang 621999, China;2.College of Environment and Safety Engineering, North University of China, Taiyuan 030051, China

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    Abstract:

    In order to clarify the influence mechanism of H2O and H2O2 molecules on the thermal stability of energetic cocrystals, molecular dynamics (MD) simulation method was employed to analyze the diffusion behavior and thermal decomposition mechanism of solvent molecules in α-CL-20 and CL-20/H2O2 (orthogonal/monoclinic). The results show that both H2O and H2O2 will diffuse out of the cell as the temperature rises, among which H2O molecules diffuse faster; when the temperature is lower than 500 K, the monoclinic CL-20/H2O2 lattice framework has the ability to hinder the diffusion of H2O2 molecules. When the temperature rises above 500 K, this hindering effect no longer exists. In the process of thermal decomposition, α-CL-20 releases energy the slowest, and the decomposition of CL-20 also proceeds the slowest; when the temperature is lower than 1500 K, the solvent exhibits a certain stabilizing effect on the thermal decomposition of energetic components, but this effect disappears as the temperature rises. In addition, the presence of solvents can increase the lattice energy significantly.

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王凡凡,李如江,张朝阳.α-CL-20和CL-20/H2O2中溶剂分子的扩散特性及其对共晶分解影响的分子动力学模拟[J].含能材料,2022,30(1):2-11.
WANG Fan-fan, LI Ru-jiang, ZHANG Chao-yang. Influence of the H2O2 and H2O Molecules Caged in α-CL-20 and CL-20/H2O2 on Diffusion Characteristics and Thermal Decomposition by Molecular Dynamics Simulation[J]. Chinese Journal of Energetic Materials,2022,30(1):2-11.

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History
  • Received:March 30,2021
  • Revised:November 03,2021
  • Adopted:April 28,2021
  • Online: October 29,2021
  • Published: January 25,2022