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A new sensitive structural motif inlaying the azides and tetrazole-based rigid 3D energetic MOFs: Highly sensitive primary explosives with excellent thermal stability.

Authors :
Xu, Jian-Gang
Yan, Yun-Fan
Li, Xiao-Zhen
Zheng, Fa-Kun
Guo, Guo-Cong
Source :
Chemical Engineering Journal. Feb2022, Vol. 429, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

A scarce highly sensitive primary explosives with excellent thermal stability was obtained. A new sensitive structural motif was first revealed for primary explosives. [Display omitted] • A rare highly sensitive primary explosive with excellent thermal stability was prepared. • A new sensitive structural motif was first revealed for azide-based primary explosives. • The good thermal stability can be attributed to the 3D rigid energetic frameworks. Although many primary explosives have been reported to date, there are three great challenges for researchers: 1) the persistent enhancement of the energetic properties of primary explosives, 2) the elucidation of sensitive structural motifs of the primary explosives, and 3) the establishment of the structural model of primary explosives with remarkable ignition performance and good thermostabilities. In this study, we employed the rigid tetrazole ligand to obtain two 3D energetic metal–organic frameworks (EMOFs) [Cu(N 3)(tz)] n 1 and [Cd 3 (N 3) 2 (tz) 3 (OH)] n 2 (Htz = tetrazole). Due to the rigid and cheated 3D nitrogen-rich metal–organic frameworks, both of the two compounds exhibit decent thermostabilities (>180 °C), and good energetic performance. In particular, the thermal decomposition temperature (T dec) of 1 is high up to 265 °C, which is higher than those of all hitherto known cupper azide-based primary explosives, including copper azide@carbon (called MOFT-CA, T dec = 204 °C) and [Cu(N 3) 2 (MTZ)] (called Cu-MTZ, MTZ = 1-methyl-5 H -tetrazole, T dec = 148 °C). Meanwhile, sensitivity tests reveal that the Impact sensitivy (IS) of 1 is ≤ 1.0 J, and the Friction sensitivity (FS) of 1 is ≤ 5.0 N, which is comparable with MOFT-CA (IS = 1 J, FS = 5 N), and superior to Cu(N 3) 2 with IS «1 J, FS « 0.1 N. Theoretical calculations demonstrate that there exists the new sensitive structural motif of azide-based EMOFs, strong repulsive steric clashes between the tetrazole ligand and azide ions, which was revealed for the first time. In addition, structural anaysis deduces that the sensitive structural motif inlaying the rigid 3D framework constucts the new structural model, which provides guidance and reference in exploring advanced primary explosives with excellent thermal stabilities. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13858947
Volume :
429
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
153706247
Full Text :
https://doi.org/10.1016/j.cej.2021.132451