Isomerism as a Design Tool: Tuning the Energy–Safety Balance of a Fused Pyrazolo-Triazine N-Oxide Energetic Material

Addressing the inherent trade-off between energy content and safety remains a long-standing priority in the field of energetic materials. In this work, we employed a straightforward isomer design strategy, synthesizing a structural isomer of 4-amino-7-methyl-5-nitro-7H-pyrazolo[3,4-d][1,2,3]triazine-2-oxide (MPTO), namely 4-methylamino-5-nitro-7H-pyrazolo[3,4-d][1,2,3]triazine-2-oxide (1). Despite involving only a subtle difference in the connectivity of substituents, compound 1 exhibits a dramatically distinct crystal packing mode compared to MPTO. This structural variation directly translates into a remarkable performance enhancement: compound 1 not only delivers superior detonation velocity (8193 m·s−1) and detonation pressure (25.6 GPa) relative to the parent compound, but also shows substantially reduced mechanical sensitivities (impact sensitivity > 20 J, friction sensitivity > 360 N), while maintaining favorable thermal stability (296 °C). This study not only provides a promising candidate energetic molecule with well-balanced overall performance, but also highlights, from a crystal engineering perspective, the significant potential of isomer design in fine-tuning the properties of fused-ring energetic materials.

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Publication Details

Journal
Molecules
Published
2026-09-11
DOI
https://doi.org/10.3390/molecules31183203
Primary Topic
Energetic Materials and Combustion
Type
article
Field-Weighted Citation Impact
0.00

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article

Isomerism as a Design Tool: Tuning the Energy–Safety Balance of a Fused Pyrazolo-Triazine N-Oxide Energetic Material

Yuhong Cao, Hai Yan Wang, Ziwu Cai, Wenquan Zhang et al.
Molecules
Energetic Materials and Combustion
article

Isomerism as a Design Tool: Tuning the Energy–Safety Balance of a Fused Pyrazolo-Triazine N-Oxide Energetic Material

Yuhong Cao, Hai Yan Wang, Ziwu Cai, Wenquan Zhang, Tianyu Jiang
article en

Abstract

Addressing the inherent trade-off between energy content and safety remains a long-standing priority in the field of energetic materials. In this work, we employed a straightforward isomer design strategy, synthesizing a structural isomer of 4-amino-7-methyl-5-nitro-7H-pyrazolo[3,4-d][1,2,3]triazine-2-oxide (MPTO), namely 4-methylamino-5-nitro-7H-pyrazolo[3,4-d][1,2,3]triazine-2-oxide (1). Despite involving only a subtle difference in the connectivity of substituents, compound 1 exhibits a dramatically distinct crystal packing mode compared to MPTO. This structural variation directly translates into a remarkable performance enhancement: compound 1 not only delivers superior detonation velocity (8193 m·s−1) and detonation pressure (25.6 GPa) relative to the parent compound, but also shows substantially reduced mechanical sensitivities (impact sensitivity > 20 J, friction sensitivity > 360 N), while maintaining favorable thermal stability (296 °C). This study not only provides a promising candidate energetic molecule with well-balanced overall performance, but also highlights, from a crystal engineering perspective, the significant potential of isomer design in fine-tuning the properties of fused-ring energetic materials.

MoleculesVol. 31(18)
China Academy of Engineering Physics (CN), Sichuan University of Science and Engineering (CN)
National Natural Science Foundation of China
Affordable and clean energy
Openalex Percentile: Top 19%
Energetic Materials and Combustion
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Isomerism as a Design Tool: Tuning the Energy–Safety Balance of a Fused Pyrazolo-Triazine N-Oxide Energetic Material — Yuhong Cao, Hai Yan Wang, et al. · Molecules (2026) | TGRS Research Map | TGRS