| Literature DB >> 36077400 |
Peng Chen1,2, Hui Dou1,2, Chunlin He1,2,3,4, Siping Pang1.
Abstract
The trinitromethyl moiety is a useful group for the design and development of novel energetic compounds with high nitrogen and oxygen content. In this work, by using an improved nitration method, the dinitromethyl precursor was successfully nitrated to the trinitromethyl product (2), and its structure was thoroughly characterized by FTIR, NMR, elemental analysis, differential scanning calorimetry, and single-crystal X-ray diffraction. Compound 2 has a high density (1.897 g cm-3), high heat of formation (984.8 kJ mmol-1), and a high detonation performance (D: 9351 m s-1, P: 37.46 GPa) that may find useful applications in the field of high energy density materials.Entities:
Keywords: 1,2,4-oxadiazole; azo group; detonation performance; energetic materials; furazan; sensitivity; trinitromethyl moieties
Mesh:
Substances:
Year: 2022 PMID: 36077400 PMCID: PMC9456194 DOI: 10.3390/ijms231710002
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Figure 1Performance comparison of compound 2 with two compounds A and B containing the 5-trinitromethyl-1,2,4-oxadiazole group.
Scheme 1Synthetic procedures for preparing compound 2.
Figure 2(a) Crystal structure of 2; (b) packing diagram of 2; (c) the angle between the furoxan plane and the 1,2,4-oxadiazole ring plane on both sides of the azo group, respectively.
Figure 3(a) Hirshfeld surfaces in the crystal stacking of 2. (b) 2D fingerprint plot of 2. (c) The pie graph of 2, which shows the percent contributions of the individual atomic contacts to the Hirshfeld surface.
Physicochemical and energetic properties of compounds 2, A, and B compared with those of RDX and HMX.
| Compd | Δ | OB | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 2 | 58.1 | 115.9 | 1.897 | 984.766 | 9351 | 37.46 | 3 | 40 | −10.66 |
| A | - | 125 | 1.850 | 461.4 | 8722 | 33.15 | 5 | 80 | +6.9 |
| B | - | 124 | 1.936 | 61.9 | 8814 | 34.50 | 10 | 80 | +7.3 |
| RDX | - | 204 | 1.80 | 70.3 | 8795 | 34.9 | 7.5 | 120 | −21.62 |
| HMX | - | 287 | 1.91 | 74.8 | 9144 | 39.2 | 7.4 | 120 | −21.62 |
Melting temperature (onset temperature at heating rate of 5 °C min−1). Decomposition temperature (onset temperature at heating rate of 5 °C min−1). Density, measured—gas pycnometer (25 °C). Heat of formation calculated using Gaussian 09 (Revision E.01). Detonation velocity –calculated using EXPLO5 V6.05. Detonation pressure –calculated using EXPL O5 V6.05. Impact sensitivity. Friction sensitivity. Oxygen balances for CaHbOcNd, 1600 (c–2a–b/2)/MW; MW = molecular weight—based on CO2 formation. Ref [27].