2018
DOI: 10.1002/cplu.201800318
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Isomers of Dinitropyrazoles: Synthesis, Comparison and Tuning of their Physicochemical Properties

Abstract: Three isomeric dinitropyrazoles (DNPs) were synthesized starting from readily available 1H‐pyrazole by slightly improved methods than described in the literature. 3,4‐Dinitropyrazole (3), 1,3‐dinitropyrazole (4), and 3,5‐dinitropyrazole (5) were obtained and compared to each other with respect to thermal stability, crystallography, sensitivity and energetic performance. Two isomers (3 and 4) show high densities (1.79 and 1.76 g cm–3) and interesting thermal behavior as melt‐castable materials (3: Tmelt.=71 °C,… Show more

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Cited by 38 publications
(44 citation statements)
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“…The signals are all in the range for C-substituted tetrazoles and 3,5-dinitropyrazoles. [26,28,39,40] For the neutral compound 3 C4 can be observed at δ = 153.6 ppm, C1/C3 at δ = The signal for the carbon atom in the cation can be found at δ = 153.1 for 5 which is a usual shift for tetrazolium cations. [41] The guanidinium and aminoguanidinium derivatives show a resonance at δ = 157.9 and 158.8 ppm, respectively.…”
Section: Nmr and Vibrational Spectroscopymentioning
confidence: 98%
See 1 more Smart Citation
“…The signals are all in the range for C-substituted tetrazoles and 3,5-dinitropyrazoles. [26,28,39,40] For the neutral compound 3 C4 can be observed at δ = 153.6 ppm, C1/C3 at δ = The signal for the carbon atom in the cation can be found at δ = 153.1 for 5 which is a usual shift for tetrazolium cations. [41] The guanidinium and aminoguanidinium derivatives show a resonance at δ = 157.9 and 158.8 ppm, respectively.…”
Section: Nmr and Vibrational Spectroscopymentioning
confidence: 98%
“…The assignments were based on comparison with theoretical calculations using Gaussian 09 [42] and literature values with similar 3,5-dinitropyrazoles and electron poor 5-substituted tetrazoles. [18,40,43] The spectrum shows two sharp signals at δ = -9.5 and -25.4 ppm. Additionally, two broad signals at δ = -93.8 and -98.0 ppm are observed.…”
Section: Nmr and Vibrational Spectroscopymentioning
confidence: 99%
“…These compounds showed extraordinary insensitivity to impact (>60 J), as the detonation properties of 40i and 41k were comparable to those of TATB ( Energetic salts often possess superior properties comparing with non-ionic species since they always show lower vapor pressures, lower impact and friction sensitivities, and enhanced thermal stabilities [19]. In addition to the derivatives mentioned above, Klapötke group [26] developed the ionic salts of 3,4-DNP and 3,5-DNP shown in Figure 15, and these salts were extremely insensitive in Table 7. Comparing with 3,4-DNP, 36 and 38 owned much lower decomposition temperatures, similar to that of 37, 39 and 3,5-DNP.…”
Section: % 73%mentioning
confidence: 99%
“…Therefore, the exploration and development of high energy density compounds with low sensitivity have been a priority. A significant amount of effort has been made to resolve this problem, such as recrystallization of Ems [20], preparing polymer bonded explosives (PBXs) [21,22], forming energetic cocrystals [23][24][25], and synthesizing novel energetic compounds [26][27][28][29]. In contrast with other technologies, synthesizing new HEDMs may be the most direct and effective method.…”
Section: Introductionmentioning
confidence: 99%
“…3,6,7‐Triamino‐[1,2,4]triazolo[4,3‐b][1,2,4]triazole (TATOT) has been shown to be a very promising energetic cation in the design of new energetic materials , , . This moiety has the advantage that it is prepared in an easily‐scaled two‐step two‐pot procedure; first inexpensive guanidinium chloride is reacted with hydrazine hydrate giving triaminoguanidinium chloride .…”
Section: Introductionmentioning
confidence: 99%