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New heterocyclic furazano[3,4-d ][1,2,3]triazine system as a platform for energetic compound engineering

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Zelenov V. P. et al. New heterocyclic furazano[3,4-d ][1,2,3]triazine system as a platform for energetic compound engineering // Mendeleev Communications. 2022. Vol. 32. No. 6. pp. 717-719.
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Zelenov V. P., Dalinger I. L., Anisimov A. A., Suponitsky K. Yu., Pivkina A. N., Sheremetev A. B. New heterocyclic furazano[3,4-d ][1,2,3]triazine system as a platform for energetic compound engineering // Mendeleev Communications. 2022. Vol. 32. No. 6. pp. 717-719.
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TY - JOUR
DO - 10.1016/j.mencom.2022.11.003
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.11.003
TI - New heterocyclic furazano[3,4-d ][1,2,3]triazine system as a platform for energetic compound engineering
T2 - Mendeleev Communications
AU - Zelenov, Victor Petrovich
AU - Dalinger, Igor L'vovich
AU - Anisimov, Aleksei Al'bertovich
AU - Suponitsky, Kirill Yu
AU - Pivkina, Alevtina Nikolaevna
AU - Sheremetev, Aleksei Borisovich
PY - 2022
DA - 2022/10/21
PB - Mendeleev Communications
SP - 717-719
IS - 6
VL - 32
ER -
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@article{2022_Zelenov,
author = {Victor Petrovich Zelenov and Igor L'vovich Dalinger and Aleksei Al'bertovich Anisimov and Kirill Yu Suponitsky and Alevtina Nikolaevna Pivkina and Aleksei Borisovich Sheremetev},
title = {New heterocyclic furazano[3,4-d ][1,2,3]triazine system as a platform for energetic compound engineering},
journal = {Mendeleev Communications},
year = {2022},
volume = {32},
publisher = {Mendeleev Communications},
month = {Oct},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.11.003},
number = {6},
pages = {717--719},
doi = {10.1016/j.mencom.2022.11.003}
}
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Zelenov, Victor Petrovich, et al. “New heterocyclic furazano[3,4-d ][1,2,3]triazine system as a platform for energetic compound engineering.” Mendeleev Communications, vol. 32, no. 6, Oct. 2022, pp. 717-719. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.11.003.

Keywords

[1,2,3]triazine 5-oxide
azido group
cascade nitration/ring-closure/ring-opening reaction
furazans
nitronium salts
tetrazoles

Abstract

Novel 7-azidofurazano[3,4-d ][1-3]triazine 5-oxide was synthesized from 3-amino-4-(tetrazol-5-yl)furazan and nitronium salt. Its characterization including energetic properties is described.

References

2.
Energetic plasticizers for gun & rocket propellants
Kumari D., Balakshe R., Banerjee S., Singh H.
Review Journal of Chemistry, 2012
3.
10.1016/j.mencom.2022.11.003_b0015
Matyáš
Primary Explosives, 2013
5.
Zlotin S.G., Churakov A.M., Egorov M.P., Fershtat L.L., Klenov M.S., Kuchurov I.V., Makhova N.N., Smirnov G.A., Tomilov Y.V., Tartakovsky V.A.
Mendeleev Communications, 2021
7.
Recent advances in chemistry of high-spin nitrenes
Chapyshev S.V., Korchagin D.V., Misochko E.Y.
Russian Chemical Reviews, 2021
8.
Heterocyclic azides: advances in their chemistry
Bakulev Vasiliy A., Shafran Yuri M., Beliaev Nikolai A., Beryozkina Tetyana V., Volkova Natalia N., Joy Muthipeedika Nibin, Fan Zhijin
Russian Chemical Reviews, 2022
9.
A green metal-free fused-ring initiating substance
Deng M., Feng Y., Zhang W., Qi X., Zhang Q.
Nature Communications, 2019
11.
Construction of Bicyclic 1,2,3-Triazine N-Oxides from Aminocyanides
Liu Y., Qi X., Zhang W., Yin P., Cai Z., Zhang Q.
Organic Letters, 2020
12.
Furazan‐Fused Azacyclic Nitramines: Influence of Structural Features on the Combustion and the Thermolysis
Sinditskii V.P., Smirnova A.D., Serushkin V.V., Aleksandrova N.S., Sheremetev A.B.
ChemistrySelect, 2020
14.
Ovcharenko V.I., Sheremetev A.B., Strizhenko K.V., Fokin S.V., Romanenko G.V., Bogomyakov A.S., Morozov V.A., Syroeshkin M.A., Kozmenkova A.Y., Lalov A.V., Egorov M.P.
Mendeleev Communications, 2021
15.
Energetic Co-Crystal of a Primary Metal-Free Explosive with BTF. Ideal Pair for Co-Crystallization
Suponitsky K.Y., Fedyanin I.V., Karnoukhova V.A., Zalomlenkov V.A., Gidaspov A.A., Bakharev V.V., Sheremetev A.B.
Molecules, 2021
16.
Gilmanov R.Z., Nikitin V.G., Khayrutdinov F.G., Strizhenko K.V., Suponitsky K.Y., Sheremetev A.B.
Mendeleev Communications, 2022
17.
Acid-base properties of 1,2,5-oxadiazoles. 2. Aminofurazans
Tselinskii I.V., Mel'nikova S.F., Vergizov S.N.
Chemistry of Heterocyclic Compounds, 1981
19.
Monocyclic furazans and furoxans
Sheremetev A.B., Makhova N.N., Friedrichsen W.
Advances in Heterocyclic Chemistry, 2001
20.
New syntheses of [1,2,5]oxadiazolo[3,4-e][1,2,3,4]tetrazine 4,6-dioxide
Zelenov V.P., Lobanova A.A., Sysolyatin S.V., Sevodina N.V.
Russian Journal of Organic Chemistry, 2013
22.
Churakov A.M., loffe S.L., Tartakovsky V.A.
Mendeleev Communications, 1995
23.
Progress in 1,2,3,4-Tetrazine Chemistry
Churakov A.M., Tartakovsky V.A.
Chemical Reviews, 2004
24.
Synthesis and properties of 4-amino-3-cyanofurazan
Andrianov V.G., Eremeev A.V.
Chemistry of Heterocyclic Compounds, 1994
25.
A new preparative method and some chemical properties of 4-R-furazan-3-carboxylic acid amidrazones
Stepanov A.I., Sannikov V.S., Dashko D.V., Roslyakov A.G., Astrat’ev A.A., Stepanova E.V.
Chemistry of Heterocyclic Compounds, 2015
26.
Developments in Tetrazole Chemistry (2009–16)
Ostrovskii V.A., Popova E.A., Trifonov R.E.
Advances in Heterocyclic Chemistry, 2017
27.
Syntheses of Nitronium Salts: A New Strategy towards Solid Nitronium Monosulfates
Zelenov V.P., Bukalov S.S., Leites L.A., Bushmarinov I.S., Struchkova M.I., Dmitrienko A.O., Tartakovsky V.A.
ChemistrySelect, 2017
28.
Reactions of nitronium sulfates: Hunting for dinitro sulfate
Zelenov V.P., Khakimov D.V., Fedyanin I.V., Troyan I.A.
Journal of Raman Spectroscopy, 2019
29.
10.1016/j.mencom.2022.11.003_b0145
Zelenov
Patent RU, 2015
30.
Diazole, Triazole, and Tetrazole N-Oxides
Begtrup M.
Advances in Heterocyclic Chemistry, 2012
31.
High-energy hydroxytetrazoles: Design, synthesis and performance
Larin A.A., Fershtat L.L.
Energetic Materials Frontiers, 2021
32.
4-Aminofurazan-3-hydroximic halides
Andrianov V.G., Semenikhina V.G., Eremeev A.V.
Chemistry of Heterocyclic Compounds, 1992
33.
A rational method of synthesis and chemical properties of 5-(4-aminofurazan-3-yl)-1-hydroxytetrazole
Stepanov A.I., Sannikov V.S., Dashko D.V., Roslyakov A.G., Astrat’ev A.A., Stepanova E.V.
Chemistry of Heterocyclic Compounds, 2017
34.
The Design of Stable High Nitrogen Systems
Tartakovsky V.A.
MRS Proceedings, 1995
36.
15N Chemical Shifts and JNN-Couplings as Diagnostic Tools for Determination of the Azide–Tetrazole Equilibrium in Tetrazoloazines
Deev S.L., Shestakova T.S., Shenkarev Z.O., Paramonov A.S., Khalymbadzha I.A., Eltsov O.S., Charushin V.N., Chupakhin O.N.
Journal of Organic Chemistry, 2021
37.
CrystalExplorer: a program for Hirshfeld surface analysis, visualization and quantitative analysis of molecular crystals
Spackman P.R., Turner M.J., McKinnon J.J., Wolff S.K., Grimwood D.J., Jayatilaka D., Spackman M.A.
Journal of Applied Crystallography, 2021
39.
Progress and performance of energetic materials: open dataset, tool, and implications for synthesis
Muravyev N.V., Wozniak D.R., Piercey D.G.
Journal of Materials Chemistry A, 2022