Synthesis of 5‐Aminotetrazole‐1 <i>N</i>‐oxide and Its Azo Derivative: A Key Step in the Development of New Energetic Materials
Синтез 5‑аминтетразола‑1 N‑оксида и его азо‑производного: ключевой этап в разработке новых энергоёмких веществ
2013-02-18
SCID: 54.1/rre2n6bj
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1-hydroxy-5-aminotetrazole5,5'-azo-bis(1-N-oxidotetrazole)EXPLO5 energetic performance (CBS-4M heats of formation, X-ray densities)sensitivity (impact, friction, electrostatic discharge)tetrazole N-oxides
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Abstract (AI)
1-Hydroxy-5-aminotetrazole (1), which is a long-desired starting material for the synthesis of hundreds of new energetic materials, was synthesized for the first time by the reaction of aqueous hydroxylamine with cyanogen azide. The use of this unique precursor was demonstrated by the preparation of several energetic compounds with equal or higher performance than that of commonly used explosives, such as hexogen (RDX). The prepared compounds, including energetic salts of 1-hydroxy-5-aminotetrazole (hydroxylammonium (2, two polymorphs) and ammonium (3)), azo-coupled derivatives (potassium (5), hydroxylammonium (6), ammonium (7), and hydrazinium 5,5'-azo-bis(1-N-oxidotetrazolate (8, two polymorphs)), as well as neutral compounds 5,5'-azo-bis(1-oxidotetrazole) (4) and 5,5'-bis(1-oxidotetrazole)hydrazine (9), were intensively characterized by low-temperature X-ray diffraction, IR, Raman, and multinuclear NMR spectroscopy, elemental analysis, and DSC. The calculated energetic performance, by using the EXPLO5 code, based on the calculated (CBS-4M) heats of formation and X-ray densities confirm the high energetic performance of tetrazole-N-oxides as energetic materials. Last but not least, their sensitivity towards impact, friction, and electrostatic discharge were explored. 5,5'-Azo-bis(1-N-oxidotetrazole) deflagrates close to the DDT (deflagration-to-detonation transition) faster than all compounds that have been investigated in our research group to date.
Key Findings
1
1-Hydroxy-5-aminotetrazole (1) was synthesized for the first time via reaction of aqueous hydroxylamine with cyanogen azide.
2
A series of energetic salts, azo-coupled derivatives, and neutral tetrazole-N-oxide compounds (compounds 2–9) were prepared and extensively characterized by X-ray diffraction, IR, Raman, multinuclear NMR, elemental analysis, and DSC.
3
Calculated heats of formation (CBS-4M) and X-ray densities used with EXPLO5 predict high energetic performance for tetrazole-N-oxides.
4
Sensitivity to impact, friction, and electrostatic discharge was measured, and 5,5'-azo-bis(1-N-oxidotetrazole) deflagrates close to DDT faster than all previously investigated compounds from the authors' group.
5
The new precursor enabled preparation of multiple energetic compounds with equal or higher performance than RDX (hexogen).
Research Object
1-Hydroxy-5-aminotetrazole and its synthesized azo and salt derivatives (tetrazole N-oxides and their energetic compounds)
Research Subject
Synthesis, structural characterization, energetic performance (calculated heats of formation and densities), and sensitivity (impact, friction, electrostatic discharge) of tetrazole N-oxides and their azo/salt derivatives as new energetic materials
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2013-02-18
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