Theoretical relationship between vibrational properties and impact sensitivity of energetic materials from the phonon upon transition theory

Shi Yuan Bao, Wei Zeng, Fu Sheng Liu, Zheng Tang Liu, Qi Jun Liu

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Based on the phonon-upon transition theory of energetic materials in molecular crystals, we analyzed the vibration properties of seven energetic materials with different chemical properties in doorway modes. The vibrational modes are divided into the phonon manifold and the intramolecular vibrational manifold. The phonon-vibron coupling is proportionally related to the energy transfer rates from the phonon manifold to the intramolecular vibration modes. Using the first-principles method of calculation, we calculated the energy transfer rates from the phonon manifold to the intramolecular vibration modes and discussed the relationship between energy transfer rates and experimental impact sensitivity. Our results show that there is a good correlation between the energy transfer rates and the impact sensitivity of energetic materials.

Original languageEnglish
Article number112085
JournalChemical Physics
Volume576
DOIs
StatePublished - 1 Jan 2024

Keywords

  • Energetic materials
  • Energy transfer rates
  • Impact sensitivity
  • Vibration properties

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