Literature DB >> 33322001

Nitro-, Cyano-, and Methylfuroxans, and Their Bis-Derivatives: From Green Primary to Melt-Cast Explosives.

Alexander A Larin1, Dmitry M Bystrov1, Leonid L Fershtat1, Alexey A Konnov1, Nina N Makhova1, Konstantin A Monogarov2, Dmitry B Meerov2, Igor N Melnikov2, Alla N Pivkina2, Vitaly G Kiselev2,3,4, Nikita V Muravyev2.   

Abstract

In the present work, we studied in detail the thermochemistry, thermal stability, mechanical sensitivity, and detonation performance for 20 nitro-, cyano-, and methyl derivatives of 1,2,5-oxadiazole-2-oxide (furoxan), along with their bis-derivatives. For all species studied, we also determined the reliable values of the gas-phase formation enthalpies using highly accurate multilevel procedures W2-F12 and/or W1-F12 in conjunction with the atomization energy approach and isodesmic reactions with the domain-based local pair natural orbital (DLPNO) modifications of the coupled-cluster techniques. Apart from this, we proposed reliable benchmark values of the formation enthalpies of furoxan and a number of its (azo)bis-derivatives. Additionally, we reported the previously unknown crystal structure of 3-cyano-4-nitrofuroxan. Among the monocyclic compounds, 3-nitro-4-cyclopropyl and dicyano derivatives of furoxan outperformed trinitrotoluene, a benchmark melt-cast explosive, exhibited decent thermal stability (decomposition temperature >200 °C) and insensitivity to mechanical stimuli while having notable volatility and low melting points. In turn, 4,4'-azobis-dicarbamoyl furoxan is proposed as a substitute of pentaerythritol tetranitrate, a benchmark brisant high explosive. Finally, the application prospects of 3,3'-azobis-dinitro furoxan, one of the most powerful energetic materials synthesized up to date, are limited due to the tremendously high mechanical sensitivity of this compound. Overall, the investigated derivatives of furoxan comprise multipurpose green energetic materials, including primary, secondary, melt-cast, low-sensitive explosives, and an energetic liquid.

Entities:  

Keywords:  1,2,5-oxadiazole-2-oxide; detonation performance; energetic materials; furoxan; mechanical sensitivity; melt-cast explosives; quantum chemistry; regioisomerism; thermochemistry

Mesh:

Substances:

Year:  2020        PMID: 33322001      PMCID: PMC7764251          DOI: 10.3390/molecules25245836

Source DB:  PubMed          Journal:  Molecules        ISSN: 1420-3049            Impact factor:   4.411


  24 in total

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9.  New Strategy for Enhancing Energetic Properties by Regulating Trifuroxan Configuration: 3,4-Bis(3-nitrofuroxan-4-yl)furoxan.

Authors:  Lianjie Zhai; Fuqiang Bi; Yifen Luo; Naixing Wang; Junlin Zhang; Bozhou Wang
Journal:  Sci Rep       Date:  2019-03-13       Impact factor: 4.379

10.  Applying machine learning techniques to predict the properties of energetic materials.

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Review 1.  A Short Review of Nitric Esters and Their Role in Energetic Materials.

Authors:  Jesse J Sabatini; Eric C Johnson
Journal:  ACS Omega       Date:  2021-04-27

2.  Probing the Reaction Mechanisms of 3,5-Difluoro-2,4,6-Trinitroanisole (DFTNAN) through a Comparative Study with Trinitroanisole (TNAN).

Authors:  Qingjie Jiao; Tianqi Li; Yapeng Ou; Suming Jing; Fang Wang
Journal:  Materials (Basel)       Date:  2022-03-31       Impact factor: 3.623

  2 in total

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