Thermal rate constants of the NO2 fission reaction of gas phase ?-HMX: a direct ab initio dynamics study

http://dx.doi.org/10.1021/jp001419e
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Publication Type abstract
School or College College of Science
Department Chemistry
Program C-SAFE, Center for the Simulation of Accidental Fires and Explosions
Creator Truong, Thanh
Other Author Zhang, Shaowen
Title Thermal rate constants of the NO2 fission reaction of gas phase ?-HMX: a direct ab initio dynamics study
Date 2000
Description The NO2 fission reaction of gas phase ?-HMX has been studied using a direct ab initio method within the framework of microcanonical variational transition state theory (?VT). The potential energy calculations were calculated using the hybrid nonlocal B3LYP density functional theory with the cc-pVDZ basis set. The calculated results show that the potential energy of breaking the axial NO2 groups is lower than that of breaking the equatorial NO2 groups. No traditional transition state was found along the reaction path. Microcanonical rate constants calculation shows the variational transition state varies from 2.0 to 3.5 Å of the breaking N?N bond length as a function of the excess energy. The ?VT method was used for thermal rate constants calculation over a temperature range from 250 to 2000 K. The fitted Arrhenius expression from the calculated data is k(T) = 1.66 × 1015 exp(?18748K/T) s-1, which is in good agreement with the experimental data at low temperatures.
Type Text
Publisher American Chemical Society
Subject HMX; Fission reaction; Thermal rate constants; Microcanonical variational transition state theory
Subject LCSH Decomposition (Chemistry); Molecular dynamics
Language eng
Bibliographic Citation Zhang, H. R., & Truong, T. (2000). Thermal rate constants of the NO2 fission reaction of gas phase ?-HMX: a direct ab initio dynamics study. Journal Physical Chemistry A, 104(31), 7304-7.
Rights Management (c)American Chemical Society http://dx.doi.org/10.1021/jp001419e
Format Medium application/pdf
Identifier ir-main,7078
ARK ark:/87278/s6j681m2
Setname ir_uspace
ID 707758
Reference URL https://collections.lib.utah.edu/ark:/87278/s6j681m2
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