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Ab initio calculations of the NO2 fission for CL-20 conformers.

Authors :
Lin-lin, Liu
Hu, Song-qi
Source :
Journal of Energetic Materials. 2019, Vol. 37 Issue 2, p154-161. 8p. 1 Diagram, 2 Charts, 3 Graphs.
Publication Year :
2019

Abstract

NO2 fission is regarded to be the most important initial decomposition process of 2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane (CL-20). In this study, four CL-20 conformers based on the ε-CL-20 were obtained after the optimization at m062x/cc-pvtz level, and the bond length, bond order and bond dissociation energy of the N-N bonds were examined to investigate the stability of these bonds. In addition, the rate constants and activation energy of the NO2 fission were evaluated using the microcanonical variational transition state theory (μVT). The calculation results have shown that N-N bonds in the case of pseudo-equatorial and axial of nitro groups are the most stable and the least stable, respectively, by evaluating the bond length, bond order and minimum energy path (MEP). The NO2 fission rate constants are affected by not only the stability of N-N bonds but also the repulsion forces from the other nitro groups, and the fission process for pseudo-equatorial positioning of nitro groups is easier to be accelerated due to the increase of the repulsion forces. The decomposition of CL-20 conformer may mainly originate from the fission of the pseudo-equatorial positioning of nitro groups, especially for CL-20 III conformer because of the significant low activation energy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07370652
Volume :
37
Issue :
2
Database :
Academic Search Index
Journal :
Journal of Energetic Materials
Publication Type :
Academic Journal
Accession number :
135802271
Full Text :
https://doi.org/10.1080/07370652.2018.1552338