Toward reliable characterization of energetic materials: interplay of theory and thermal analysis in the study of the thermal stability of tetranitroacetimidic acid (TNAA)

Author:

Kiselev Vitaly G.12345ORCID,Muravyev Nikita V.673ORCID,Monogarov Konstantin A.673ORCID,Gribanov Pavel S.873ORCID,Asachenko Andrey F.873910ORCID,Fomenkov Igor V.1173,Goldsmith C. Franklin451213ORCID,Pivkina Alla N.673ORCID,Gritsan Nina P.123142ORCID

Affiliation:

1. Novosibirsk State University

2. 630090 Novosibirsk

3. Russia

4. Brown University

5. School of Engineering

6. Semenov Institute of Chemical Physics RAS

7. 119991 Moscow

8. Topchiev Institute of Petrochemical Synthesis RAS

9. Peoples' Friendship University of Russia

10. 117198 Moscow

11. Zelinsky Institute of Organic Chemistry RAS

12. Providence

13. USA

14. Institute of Chemical Kinetics and Combustion SB RAS

Abstract

Kinetics and mechanism of thermal decomposition of tetranitroacetimidic acid, a novel green energetic material, were studied using complementary thermoanalytical methods (DSC and TGA) and quantum chemistry (CCSD(T)-F12).

Funder

Russian Foundation for Basic Research

Russian Science Foundation

Ministry of Education and Science of the Russian Federation

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Reference77 articles.

1. Thermal decomposition of ammonium perchlorate

2. T. M. Klapotke , Chemistry of High-Energy Materials , de Gruyter, GmBH , Berlin/Boston , 2015

3. A. N. Pivkina , N. V.Muravyev , K. A.Monogarov , V. G.Ostrovsky , I. V.Fomenkov , Y. M.Milyokhin and N. I.Shishov , in Chemical Rocket Propulsion: A Comprehensive Survey of Energetic Materials , ed. L. T. De Luca , T. Shimada , V. P. Sinditskii and M. Calabro , Springer International Publishing , 2017 , pp. 365–381

4. Perchlorate Treatment Technology Update, US Environmental Protection Agency, 2005

5. Perchlorate: Overview of Issues, Status, and Remedial Options., ITRC (Interstate Technology & Regulatory Council), Washington, D.C., 2005

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