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High-nitrogen energetic materials derived from azotetrazolate

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TLDR
The preparation and properties of three unique high-nitrogen materials based on the anion azotetrazolate are described in this article, which have possible applications as explosives, pyrotechnics, gas generants and low signature propellants.
Abstract
The preparation and properties of three unique high-nitrogen materials based on the anion azotetrazolate are described. Cations examined were the ammonium, guanidinium and triaminoguanidinium. These compounds are unique in their gas generating ability with little or no smoke or residue produced. These materials have possible applications as explosives, pyrotechnics, gas generants and low signature propellants.

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Citations
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Journal ArticleDOI

Advances in science and technology of modern energetic materials: an overview.

TL;DR: This paper also reviews work done on primary explosives of current and futuristic interest based on energetic co-ordination compounds and highlights the important contributions made by the various researchers in the frontier areas energetic ballistic modifiers, energetic binders and energetic plasticizers.
Journal ArticleDOI

Energetic nitrogen-rich salts and ionic liquids.

TL;DR: The use of nitrogen containing anions and cations contributes to high heats of formations and high densities as discussed by the authors, which makes them very promising candidates for highly energetic materials for industrial or military applications.
Journal ArticleDOI

Environmentally compatible next generation green energetic materials (GEMs).

TL;DR: This paper briefly reviews the literature work reported on the environmentally compatible green energetic materials (GEMs) for defence and space applications and briefs the principles of green chemistry pertaining to HEMs.
Journal ArticleDOI

Green Pyrotechnics : A Chemists' Challenge

TL;DR: This Review summarizes the sources of pollution in current formulations and recent efforts toward "green" pyrotechnics.
Journal ArticleDOI

Rapid and Accurate Estimation of Densities of Room-Temperature Ionic Liquids and Salts

TL;DR: Volume parameters for room-temperature ionic liquids (RTILs) and salts were developed and the experimental density for an alkylated imidazolium or pyridinium-based room- temperature ionic liquid is approximately proportional to its calculated density in the solid state.
References
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Journal ArticleDOI

An improved synthesis of 3,6-diamino-1,2,4,5-tetrazine. II: From triaminoguanidine and 2,4-pentanedione

TL;DR: A new synthesis for triaminoguanidine monohydrochloride gave an 80% overall yield as mentioned in this paper, which was developed for the title compound that gives an 80 % overall yield.
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