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100T. M. Klapötke, B. Krumm and M. Scherr.
Oxygen versus nitrogen interactions in lithium dinitramidate dihydrate and pyridinium dinitramidate, Acta Cryst. (2008). C64, m17-m19Â Â Â Â Garima Choudhary and Rama Krishna Peddinti.
An expeditious, highly efficient, catalyst-free and solvent-free synthesis of nitroamines and nitrosulfides by Michael addition, Green Chem., 2011, 13, 276. Mirjana Eckert-Maksic, Howard Maskill and Irena Zrinski.
Acidic and basic properties of nitramide, and the catalysed decomposition of nitramide and related compounds: an ab initio theoretical investigation, J. Chem. Soc., Perkin Trans. 2, 2001, 0, 2147. Kinetics of the thermal decomposition of bis-(2,2-dinitropropyl)-N-nitroamine, Bulletin of the Academy of Sciences of the USSR, Division of chemical science On the mechanism of autocatalytic thermal decomposition of some secondary nitramines, Russian Journal of General Chemistry Regional Scale Dispersion Modelling??of Amines from Industrial CCS Processes with COSMO-MUSCAT, Air Pollution Modeling and its Application XXIV Structure-Thermolysis Relationships for Energetic Materials, Chemistry and Physics of Energetic Materials Adduct Ions in Mass Spectrometry of Nitramine Munitions Compounds, Advances in Analysis and Detection of Explosives Computational Studies of Energetic Nitramines, Chemistry and Physics of Energetic Materials Sulfamic acid andN-alkylsulfamates in the synthesis of nitro derivatives of guanidine and aminofurazan, Russian Chemical Bulletin