One-Step Fabrication of High-Performance Energetic Metal-Organic Framework [Cu(atrz)3[NO3]2]n Films and its Tunable Crystal Structure

Hui Su, Shi Yan, Chaofeng Zhao, Panpan Peng, Liang Jin, Shenghua Li*, Siping Pang*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

2 Citations (Scopus)

Abstract

Nanoenergetics-on-a-chip (NOC) have been widely used with excellent performance. Nevertheless, the development of simple, convenient, low cost, and environmentally friendly strategies for preparation of energetic metal-organic framework (E-MOF) NOC films remains a challenge. In this work, we present a one-step solvothermal method to deposit three-dimensional (3-D) E-MOF films, [MOFfilm(Cu); [Cu(atrz)3(NO3)2]n (atrz=4,4’-azo-1,2,4-triazole)] on oxidized copper foil. Physicochemical properties, including morphologies, decomposition temperature, sensitivity, laser ignition characteristics, and flame height of the MOFfilm(Cu) films were analysed. With thermal stability up to 243 °C, the resulting MOFfilm(Cu) films exhibit low sensitivity (Impact sensitivity (IS): 16 J; Friction sensitivity (FS): 112 N, and Electrostatic sensitivity (ESD): 24.75 J), combined with laser ignition capability. After laser excitement, MOFfilm(Cu) films can act as an ignition material owing to a remarkable flame height (8 mm) and a violent explosion process (180 μs). More importantly, the energetic properties for MOFfilm(Cu) films are conveniently tunable via a simple anion exchange strategy, and two new energetic MOF films, MOFfilm(Cu) ⋅ SO4 and MOFfilm(Cu) ⋅ BF4, have been prepared. This work provides a simple, safe, convenient, and lower cost strategy for fabricating energetic MOF films that are applicable in NOC technologies, and opens a new field for the application of anion exchange strategy.

Original languageEnglish
Pages (from-to)1746-1753
Number of pages8
JournalPropellants, Explosives, Pyrotechnics
Volume46
Issue number11
DOIs
Publication statusPublished - Nov 2021

Keywords

  • anion exchange
  • energetic metal-organic framework
  • films
  • one-step

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