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Updated: Jan 7, 2026

Research and Development of High-performance Explosives
Published on: February 20, 2016
High Heat of Detonation Energetic Material Based on Oxadiazoles and Nitroform Groups with Zero Oxygen Balance
Yu-Cong Chen1, Qiong Yu1,2, Yifan Gao1
1School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
Abstract:
An effective strategy for enhancing the heat of detonation is to incorporate high-enthalpy backbone structures while maintaining an oxygen balance close to zero. This approach maximizes energy release while supporting favorable decomposition characteristics. Consequently, 3,4-bis(5-(trinitromethyl)-1,2,4-oxadiazol-3-yl)-1,2,5-oxadiazole 2-oxide (4) was synthesized, which combines three oxadiazole rings and two nitroform groups. A series of energetic salts (3, 5-7) corresponding to the dinitromethyl derivative of 4 were also studied. The structures of compounds 3 and 4 were determined through a single-crystal diffraction analysis. Notably, compound 3 exhibits pores situated between its molecules and is categorized as a hydrogen-bonded organic framework (HOF). This characteristic imparts compound 3 with a lower mechanical sensitivity, indicated by its impact and friction sensitivity (IS = 25 J, FS>360 N). Compound 4 exhibits a markedly enhanced theoretical heat of detonation (6949 kJ kg- 1), surpassing that of CL-20 (6534 kJ kg- 1) and achieving the highest heat of detonation among other structurally analogous compounds. This comparison highlights its potential as a valuable contributor to the synthesis of high-energy compounds with enhanced heat detonation characteristics.
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