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- 2011 Annual Meeting
- Particle Technology Forum
- Thermophysical Properties of Energetic Materials
- (760a) Development of Accurate Intermolecular Potentials for Mono and Dinitro Aromatic Comounds
In this work, molecular models are developed for mono- and di- nitro aromatic compounds, including 2.4-dinitroanisole (DNAN), N-methyl-p-nitroaniline (MNA), 1,3-dinitrobenzene (13DNB), 1,4-dinitrobenzene (14DNB), 2-nitroanisole (2NAN) and 4-nitroanisole (4NAN), based on the Transferable Potentials for Phase Equilibria (TraPPE) [1,2,3]. These models are used in molecular dynamics to predict physicochemical properties, such as log Kow, KH, crystal density, melting point, vapor pressure and hypothetical vapor-liquid coexistence curves. Molecular dynamics simulations are performed with NAMD using united atom TraPPE force field and SPC/E water model. Absolute values of the 1-octanol/water and air water partition coefficients were calculated directly using the adaptive biasing force method [4].
1. Martin, M.G.; Siepmann, J.I. J. Phys. Chem. B (1998), 102, 2569.
2. Chen, B.; Potoff, J.J.; Siepmann, J.I. J. Phys. Chem. B (2001), 105, 3093.
3. Wick, C.D.; Stubbs, J.M.; Rai, N.; Siepmann, J.I. J. Phys. Chem. B (2005), 109, 18974
4. Rodriguez-Gomez, D.; Darve, E.; Pohorille, A. J. Chem. Phys. (2004), 120, 3563.