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Computational insight into the reactivity of FOX-7 and its bridge-ring energetic derivatives from Diels–Alder reactions.

Authors :
Xue, Mei
Li, Yunlu
Zhang, Pengcheng
He, Chunlin
Source :
New Journal of Chemistry. 6/21/2024, Vol. 48 Issue 23, p10664-10675. 12p.
Publication Year :
2024

Abstract

The reaction characteristics of FOX-7 and NH2/NO2-substituted oxazole compounds in the Diels–Alder reaction were studied, based on which six series of novel bridge-ring energetic compounds were designed. The reaction feasibility, energetic properties and stability of the designed compounds were extensively evaluated based on density functional theory. The preferred dienes tend to undergo normal or inverse Diels–Alder reactions with FOX-7. And, the formation of the most designed bridge-ring energetic compounds tends to follow a two-step reaction mechanism rather than the common one-step concerted cycloaddition mechanism. All the designed bridge-ring energetic compounds exhibited excellent detonation performance, except for P1 and P2 series compounds. In a comprehensive evaluation of detonation performance and stability, compounds P6-1 and P6-3 (ρ > 2.08 g cm−3, D > 9800 m s−1, P > 44 GPa, h50 values are comparable to that of CL-20) and compounds P4-1, P4-4, P5-1, and P5-4 (ρ: 1.952–1.976 g cm−3, D: 9474–9508 m s−1, P: 40.5–41.5 GPa, h50 values are superior to that of CL-20) are the most promising high-energy-density compounds. This study can provide some guidance for the extension of the derivative reaction of FOX-7, as well as the design and experimental synthesis of these novel bridge-ring energetic compounds. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
11440546
Volume :
48
Issue :
23
Database :
Academic Search Index
Journal :
New Journal of Chemistry
Publication Type :
Academic Journal
Accession number :
177774540
Full Text :
https://doi.org/10.1039/d4nj01262c