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Density Functional Calculations of C–NO_2 Bond Dissociation Energies for Nitroalkanes Molecules 被引量:1

Density Functional Calculations of C–NO_2 Bond Dissociation Energies for Nitroalkanes Molecules
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摘要 Bond dissociation energies for the removal of nitrogen dioxide group in some nitroalkane energetic materials have been calculated by using the three hybrid density functional theory (DFT) methods B3LYP, B3PW91 and B3P86 with 6-31g^** and 6-311g^** basis sets. The computed BDEs have been compared with the available experimental results. It is found that the B3P86 method with 6-31g^** and 6-311g^** basis sets can obtain satisfactory bond dissociation energies (BDEs), which are in extraordinary agreement with the experimental data. Considering the smaller mean absolute deviation and maximum difference, the reliable B3P86/6-311g^** method was recommended to compute the BDEs for the removal of nitrogen dioxide group in the nitroalkane energetic materials. Using the method, the BDEs of 8 other nitroalkane energetic materials have been calculated and the maximum difference from experimental value is 1.76 kcal.mo1^-1 (for the BDE of tC4Hg-NOz), which further proves the reliability of B3P86/6-311g^** method. In addition, it is noted that the BDEs of C-NO2 bond change slightly for main chain nitroalkane compounds with the maximum difference of only 3.43 kcal mo1^-1. Bond dissociation energies for the removal of nitrogen dioxide group in some nitroalkane energetic materials have been calculated by using the three hybrid density functional theory (DFT) methods B3LYP, B3PW91 and B3P86 with 6-31g^** and 6-311g^** basis sets. The computed BDEs have been compared with the available experimental results. It is found that the B3P86 method with 6-31g^** and 6-311g^** basis sets can obtain satisfactory bond dissociation energies (BDEs), which are in extraordinary agreement with the experimental data. Considering the smaller mean absolute deviation and maximum difference, the reliable B3P86/6-311g^** method was recommended to compute the BDEs for the removal of nitrogen dioxide group in the nitroalkane energetic materials. Using the method, the BDEs of 8 other nitroalkane energetic materials have been calculated and the maximum difference from experimental value is 1.76 kcal.mo1^-1 (for the BDE of tC4Hg-NOz), which further proves the reliability of B3P86/6-311g^** method. In addition, it is noted that the BDEs of C-NO2 bond change slightly for main chain nitroalkane compounds with the maximum difference of only 3.43 kcal mo1^-1.
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 北大核心 2007年第12期1481-1485,共5页 结构化学(英文)
基金 The project was supported by the National Natural Science Foundation of China (No. 10574096 and 10676025)
关键词 bond dissociation energy density functional calculation nitroalkane energetic compound bond dissociation energy, density functional calculation,nitroalkane, energetic compound
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  • 1Andrew, D. H. Phys. Rev. 1990, 36, 544-554.
  • 2Holtz, E. V.; Omellas, D. O.; Foltz, M. F. Propellants, Explosives, Pyrotechnics 1994, 19, 206-212.
  • 3Foltz, M. F. Propellants, Explosives, Pyrotechnics 1994, 19, 63-69.
  • 4Melius. C. E in Bulusu, S. N. (Ed,) Chemistry and Physics of Energetic Materials (Netherlands: Kluwer) 1990.
  • 5Owens, F. J. J. Mol. Struct, (Theochem,) 1996, 370, 11-16.
  • 6Rice, B. M.; Sahu, S.; Owens, E J. J. Mol.Struct. (Theochem,) 2002, 583, 69-72.
  • 7Marynick, D, S.; Ray, A. K.; Fry, J. L.; Kleier, A. J. Mol. Struct. (Theochem.) 1984, 108, 45-48.
  • 8Klerier, D. A.; Lipton, M. A, J. Mol. Struct, (Theochem.) 1984, 109, 39-42.
  • 9Marynick, D. S.; Ray, A. K.; Fry, J. L. Chem. Phys. Lett. 1985, 116, 429-433.
  • 10Mckee, M. L. J. Chem. Phys. 1989, 93, 7365-7369.

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