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Novel energetic oxadiazole assemblies

Alexander Aleksandrovich Larin
Alexander Viktorovich Shaferov
Konstantin Alexandrovich Monogarov 2
Konstantin Alexandrovich Monogarov
Dmitry B Meerov 2
Dmitry B Meerov
Alevtina Nikolaevna Pivkina 2
Alevtina Nikolaevna Pivkina
Published 2022-01-03
CommunicationVolume 32, Issue 1, 111-113
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Larin A. A. et al. Novel energetic oxadiazole assemblies // Mendeleev Communications. 2022. Vol. 32. No. 1. pp. 111-113.
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Larin A. A., Shaferov A. V., Monogarov K. A., Meerov D. B., Pivkina A. N., Fershtat L. L. Novel energetic oxadiazole assemblies // Mendeleev Communications. 2022. Vol. 32. No. 1. pp. 111-113.
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TY - JOUR
DO - 10.1016/j.mencom.2022.01.036
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.01.036
TI - Novel energetic oxadiazole assemblies
T2 - Mendeleev Communications
AU - Larin, Alexander Aleksandrovich
AU - Shaferov, Alexander Viktorovich
AU - Monogarov, Konstantin Alexandrovich
AU - Meerov, Dmitry B
AU - Pivkina, Alevtina Nikolaevna
AU - Fershtat, Leonid Leonidovich
PY - 2022
DA - 2022/01/03
PB - Mendeleev Communications
SP - 111-113
IS - 1
VL - 32
ER -
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@article{2022_Larin,
author = {Alexander Aleksandrovich Larin and Alexander Viktorovich Shaferov and Konstantin Alexandrovich Monogarov and Dmitry B Meerov and Alevtina Nikolaevna Pivkina and Leonid Leonidovich Fershtat},
title = {Novel energetic oxadiazole assemblies},
journal = {Mendeleev Communications},
year = {2022},
volume = {32},
publisher = {Mendeleev Communications},
month = {Jan},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.01.036},
number = {1},
pages = {111--113},
doi = {10.1016/j.mencom.2022.01.036}
}
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Larin, Alexander Aleksandrovich, et al. “Novel energetic oxadiazole assemblies.” Mendeleev Communications, vol. 32, no. 1, Jan. 2022, pp. 111-113. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2022.01.036.

Keywords

1,2,5-oxadiazoles
detonation performance
energetic materials
furoxans
nitrogen heterocycles

Abstract

A series of novel, structurally diverse 1,2,4- and 1,2,5-oxadi- azole assemblies was synthesized from readily available furoxanyl precursors. Experimentally determined physico-chemical properties and calculated detonation parameters showed an application potential of the prepared nitrogen-oxygen molecular systems as promising energetic materials.

References

4.
Hydride- and boron-free solid hypergolic H2O2-ignitophores
Das J., Shem-Tov D., Wang S., Zhang L., Flaxer E., Zhang S., Stierstorfer J., Wang K., Yan Q., Dobrovetsky R., Gozin M.
Chemical Engineering Journal, 2021
6.
High-energy hydroxytetrazoles: Design, synthesis and performance
Larin A.A., Fershtat L.L.
Energetic Materials Frontiers, 2021
7.
Tetrazole-functionalized microcrystalline cellulose: A promising biopolymer for advanced energetic materials
Tarchoun A.F., Trache D., Klapötke T.M., Khimeche K.
Chemical Engineering Journal, 2020
8.
Synergetic Explosive Performance through Cocrystallization
Snyder C.J., Imler G.H., Chavez D.E., Parrish D.A.
Crystal Growth and Design, 2021
9.
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
10.
Prospective Symbiosis of Green Chemistry and Energetic Materials
Kuchurov I.V., Zharkov M.N., Fershtat L.L., Makhova N.N., Zlotin S.G.
ChemSusChem, 2017
11.
CL-20 performance exceeds that of HMX and its sensitivity is moderate
Simpson R.L., Urtiew P.A., Ornellas D.L., Moody G.L., Scribner K.J., Hoffman D.M.
Propellants, Explosives, Pyrotechnics, 1997
12.
Crystal Solvates of Energetic 2,4,6,8,10,12-Hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane Molecule with [bmim]-Based Ionic Liquids
Fedyanin I.V., Lyssenko K.A., Fershtat L.L., Muravyev N.V., Makhova N.N.
Crystal Growth and Design, 2019
13.
Hepta- and Octanitrocubanes
Zhang M., Eaton P.E., Gilardi R.
Angewandte Chemie - International Edition, 2000
14.
Assembly of Tetrazolylfuroxan Organic Salts: Multipurpose Green Energetic Materials with High Enthalpies of Formation and Excellent Detonation Performance
Larin A.A., Muravyev N.V., Pivkina A.N., Suponitsky K.Y., Ananyev I.V., Khakimov D.V., Fershtat L.L., Makhova N.N.
Chemistry - A European Journal, 2019
15.
Tailoring Energetic Sensitivity and Classification through Regioisomerism
Wozniak D.R., Salfer B., Zeller M., Byrd E.F., Piercey D.G.
Organic Letters, 2020
16.
(c) J. R. Yount, M. Zeller, E. F. C. Byrd and D. G. Piercey, J. Mater. Chem. A, 2020, 8, 19337
17.
Taming the Dragon: Complexation of Silver Fulminate with Nitrogen-Rich Azole Ligands
Wurzenberger M.H., Gruhne M.S., Lommel M., Braun V., Szimhardt N., Stierstorfer J.
Inorganic Chemistry, 2020
18.
(e) A. A. Voronin, I. V. Fedyanin, A. M. Churakov, A. N. Pivkina, N. V. Muravyev, Yu. A. Strelenko, M. S. Klenov, D. B. Lempert and V. A. Tartakovsky, ACS Appl. Energy Mater., 2020, 3, 9401
19.
Impact of Stereo- and Regiochemistry on Energetic Materials
Barton L.M., Edwards J.T., Johnson E.C., Bukowski E.J., Sausa R.C., Byrd E.F., Orlicki J.A., Sabatini J.J., Baran P.S.
Journal of the American Chemical Society, 2019
20.
Tetrazole Azasydnone (C 2 N 7 O 2 H) And Its Salts: High‐Performing Zwitterionic Energetic Materials Containing A Unique Explosophore
Gettings M.L., Thoenen M.T., Byrd E.F., Sabatini J.J., Zeller M., Piercey D.G.
Chemistry - A European Journal, 2020
21.
Vinogradov D.B., Bulatov P.V., Petrov E.Y., Tartakovsky V.A.
Mendeleev Communications, 2020
24.
Assembly of Nitrofurazan and Nitrofuroxan Frameworks for High-Performance Energetic Materials
Fershtat L.L., Ovchinnikov I.V., Epishina M.A., Romanova A.A., Lempert D.B., Muravyev N.V., Makhova N.N.
ChemPlusChem, 2017
25.
Pushing the Energy-Sensitivity Balance with High-Performance Bifuroxans
Larin A.A., Shaferov A.V., Epishina M.A., Melnikov I.N., Muravyev N.V., Ananyev I.V., Fershtat L.L., Makhova N.N.
ACS Applied Energy Materials, 2020
26.
Synthesis and Characterization of Diaminobisfuroxane
Fischer D., Klapötke T.M., Stierstorfer J.
European Journal of Inorganic Chemistry, 2014
27.
Boosting energetic performance by trimerizing furoxan
He C., Gao H., Imler G.H., Parrish D.A., Shreeve J.M.
Journal of Materials Chemistry A, 2018
28.
Regioselective synthesis of bifuroxanyl systems with the 3-nitrobifuroxanyl core via a one-pot acylation/nitrosation/cyclization cascade
Fershtat L.L., Larin A.A., Epishina M.A., Kulikov A.S., Ovchinnikov I.V., Ananyev I.V., Makhova N.N.
Tetrahedron Letters, 2016
29.
Synthesis, Characterization and Properties of Ureido‐Furazan Derivatives
Hermann T.S., Klapötke T.M., Krumm B., Stierstorfer J.
Journal of Heterocyclic Chemistry, 2018
30.
Novel Highly Energetic Pyrazoles:N-Trinitromethyl-Substituted Nitropyrazoles
Dalinger I.L., Vatsadze I.A., Shkineva T.K., Kormanov A.V., Struchkova M.I., Suponitsky K.Y., Bragin A.A., Monogarov K.A., Sinditskii V.P., Sheremetev A.B.
Chemistry - An Asian Journal, 2015
32.
10.1016/j.mencom.2022.01.036_h0080
Pepekin
Proc. USSR Acad. Sci., 1977
34.
Bruker APEX-3, Bruker AXS, Madison, WI, 2018.
35.
Comparison of silver and molybdenum microfocus X-ray sources for single-crystal structure determination
Krause L., Herbst-Irmer R., Sheldrick G.M., Stalke D.
Journal of Applied Crystallography, 2015
36.
10.1016/j.mencom.2022.01.036_b0080
Sheldrick
Acta Crystallogr., 2015
37.
10.1016/j.mencom.2022.01.036_b0085
Sheldrick
Acta Crystallogr., 2015
38.
Sensitivity of energetic materials: Evidence of thermodynamic factor on a large array of CHNOFCl compounds
Muravyev N.V., Meerov D.B., Monogarov K.A., Melnikov I.N., Kosareva E.K., Fershtat L.L., Sheremetev A.B., Dalinger I.L., Fomenkov I.V., Pivkina A.N.
Chemical Engineering Journal, 2021
39.
Learning to fly: thermochemistry of energetic materials by modified thermogravimetric analysis and highly accurate quantum chemical calculations.
Muravyev N.V., Monogarov K.A., Melnikov I.N., Pivkina A.N., Kiselev V.G.
Physical Chemistry Chemical Physics, 2021