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Updated: May 1, 2026

Preparation and Reactivity of Gasless Nanostructured Energetic Materials
Published on: April 2, 2015
Synthesis of Fused-Nitrogen-Based Energetic Ionic Liquids: Low-Temperature and High Energy Plasticizers for Solid
Hao Su1,2, Yueqian Gong1, Guilong Wang1,2
1Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, P.R. China.
Abstract:
Herein, we liquefied fused-nitrogen compounds as a viable alternative to traditional high-sensitivity plasticizers by employing ionic liquid engineering. We synthesized three novel fused-nitrogen compounds N6-(1,3,4-oxadiazol-2-yl)-[1,2,4]triazolo[4,3-b][1,2,4,5]tetrazin (DTOZ), N6-(5-diamine-1,2,4-oxadiazole-3-yl)-[1,2,4]triazolo[4,3-b][1,2,4,5]tetrazin (DTFA) and N6-(4,5-dicyanoimidazol-2-yl)-[1,2,4]triazolo[4,3-b][1,2,4,5]tetrazin (DTIZCN) based on triazolo-tetrazine backbone having high energy and low sensitivity (impact sensitivity > 40 J) by incorporating amino nitrogen heterocycles. The decomposition temperature (Td) and enthalpy of formation (ΔHf) of DTIZCN were 327.9°C and 1118.7 kJ mol-1, respectively, while the density of DTOZ (1.814 g cm-3) was comparable to cyclotrimethylenetrinitramine (RDX). Nine fused-nitrogen-based energetic ionic liquids (EILs), with ΔHf between 204.9 and 531.1 kJ mol-1, were synthesized via neutralization of three aliphatic quaternary ammonium cations. The DDA-DTOZ showed a low glass transition temperature (Tg = -46.1°C). Fused-nitrogen compounds demonstrated improved performance compared to conventional energetic materials, with a maximum specific impulse performance of 267.69 s being reached for DODA-DTFA with 14% plasticizer. Fused-nitrogen-based EILs showed application potential in high-energy propellants.
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