Thermochemical properties of trinitromethyl-1,3,5-triazines
- Authors: Kon’kova T.S.1, Miroshnichenko E.A.1, Shastin A.V.2, Makhov M.N.1, Matyushin Y.N.1, Korsunskiy B.L.1,2
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Affiliations:
- Semenov Institute of Chemical Physics Russian Academy of Sciences
- Institute of problems of Chemical Physics Russian Academy of Sciences
- Issue: Vol 43, No 1 (2024)
- Pages: 60-65
- Section: Combustion, explosion and shock waves
- URL: https://cijournal.ru/0207-401X/article/view/674999
- DOI: https://doi.org/10.31857/S0207401X24010078
- EDN: https://elibrary.ru/mheoik
- ID: 674999
Cite item
Abstract
The enthalpies of combustion and enthalpies of formation of three trinitromethyl derivatives of 1,3,5-triazine were determined by calorimetric method. The data obtained can be used for calculating the energy capabilities of related compounds by the method of replacing functional groups. As an example, the detonation characteristics of high-energy tris(trinitromethyl)-1,3,5-triazine are calculated.
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About the authors
T. S. Kon’kova
Semenov Institute of Chemical Physics Russian Academy of Sciences
Email: taskon@mail.ru
Russian Federation, Moscow
E. A. Miroshnichenko
Semenov Institute of Chemical Physics Russian Academy of Sciences
Email: taskon@mail.ru
Russian Federation, Moscow
A. V. Shastin
Institute of problems of Chemical Physics Russian Academy of Sciences
Email: taskon@mail.ru
Russian Federation, Chernogolovka
M. N. Makhov
Semenov Institute of Chemical Physics Russian Academy of Sciences
Email: taskon@mail.ru
Russian Federation, Moscow
Yu. N. Matyushin
Semenov Institute of Chemical Physics Russian Academy of Sciences
Email: taskon@mail.ru
Russian Federation, Moscow
B. L. Korsunskiy
Semenov Institute of Chemical Physics Russian Academy of Sciences; Institute of problems of Chemical Physics Russian Academy of Sciences
Author for correspondence.
Email: taskon@mail.ru
Russian Federation, Moscow; Chernogolovka
References
- A. V. Shastin, T. I. Godovikova, B. L. Korsunskiy. Rus. Chem. Revs, 72(3), 279 (2003).
- I. N. Zyuzin, I. Yu. Gudkova, D. B. Lempert. Rus. J. Phys. Chem. B, 14(5), 804 (2020).
- R. S. Stepanov, L. A. Kruglyakova, A. M. Astakhov, Zhurnal Obschey Khimii, 77(11), 1881 (2007) [in Russian].
- A. V. Shastin, T. I. Godovikova, B. L. Korsunskiy, Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 6, 1194 (2011) [in Russian].
- Ya. O. Inozemtsev, A. B. Vorobyev, A. V. Inozemtsev, Yu. N. Matyushin. Goreniye I Vzryv, No. 7, 260 (2014) [in Russian].
- T. S. Kon’kova, Yu. N. Matyushin, E. A. Miroshnichenko, A. B. Vorobyev, Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 10, 1958 (2009) [in Russian].
- M. J. Kamlet, S. J. Jacobs // J. Chem. Phys., 48 (3), 23 (1968).
- M. N. Makhov, V. I. Arkhipov, Fiz. Goreniya Vzryva 25 (3), 87 (1989) [in Russian].
- M. N. Makhov and V. I. Arkhipov, Russ. J. Phys. Chem. B 2, 602 (2008).
- S. M. Skuratov, V. P. Kolesov, A. F. Vorob’ev. Thermochemistry (Part II), Moscow University, 1966.
- E. A. Miroshnichenko, V. P. Lebedev, Yu. N. Matyushin, Doklady Akademii Nauk, 382(4), 497 (2002) [in Russian].
- M.-H. V. Huynh, M. A. Hiskey, E. L. Hartline, D. P. Montoya, R. Gilardi, Angew. Chem. Int. Ed. 43, 4924 (2004).
- A. V. Shastin, T. I. Godovikova, S. P. Golova, V. S. Kuz’min, L. I. Khmel’nitskii, B. L. Korsunskii, Mendeleev Comm., 5(1), 17 (1995).
- A. V. Shastin, D. B. Lempert, Khimicheskaya fizika, 35(8), 44 (2016) [in Russian].
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