Combination of Trinitromethyl Groups and Fused-Ring Skeletons for Construction of High-Energy and Low-Sensitivity Energetic Compounds

IF 3.4 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Crystal Growth & Design Pub Date : 2025-02-26 DOI:10.1021/acs.cgd.4c01304
Mengya Wan, Caijin Lei, Xuezhi Yu, Jie Tang, Chuan Xiao, Hongwei Yang* and Guangbin Cheng*, 
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Abstract

The difficulty in developing new trinitromethyl energetic materials stems from the need to balance the opposing properties of high energy and low sensitivity. This study reports new synthetic compounds based on the combination of trinitromethyl groups and a fused-ring system. In this work, three novel fused-ring compounds, 7-amino-3-nitro-2-(trinitromethyl)pyrazolo[1,5-a]pyrimidine-6-carboxylic acid (3), 3-nitro-6-(1H-tetrazol-5-yl)-2-(trinitromethyl)pyrazolo[1,5-a]pyrimidin-7-amine (5), and 3,6-dinitro-2-(trinitromethyl)pyrazolo[1,5-a]pyrimidin-7-amine (7), were all synthesized through cyclization and nitration reaction. Compounds 3 (VD = 8549 m·s–1, ρ = 1.79 g·cm–3) and 5 (VD = 8520 m·s–1, ρ = 1.80 g·cm–3) both demonstrate high density and detonation velocities that closely resembles that of RDX (VD = 8795 m·s–1, ρ = 1.80 g·cm–3). Remarkably, compound 7 featured with an ortho amino-nitro group exhibits a higher density of 1.82 g·cm–3 and more excellent detonation performance (VD = 8867 m·s–1, P = 35.1 GPa) than RDX (VD = 8795 m·s–1, P = 34.9 GPa). Compounds 5 and 7 both exhibit better thermal stability (Td (5) = 155 °C and Td (7) = 178 °C) compared with those of the already synthesized trinitromethyl energetic compounds. In addition, compounds 5 (IS = 16 J, FS = 168 N) and 7 (IS = 14 J, FS = 144 N) both exhibit sensitivity lower than that of RDX (IS = 7.4 J, FS = 120 N). The above results suggest the great application potentials of compound 7 as a high-energy and low-sensitivity energetic material.

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三硝基甲基与熔合环骨架的结合构建高能量和低灵敏度含能化合物
开发新型三硝基甲基含能材料的困难在于需要平衡高能量和低灵敏度的对立性质。本研究报道了基于三硝基甲基和融合环体系的新合成化合物。本文通过环化和硝化反应合成了3种新型的融合环化合物:7-氨基-3-硝基-2-(三硝基甲基)吡唑罗[1,5-a]嘧啶-6-羧酸(3)、3-硝基-6-(1h -四硝基-5-基)-2-(三硝基甲基)吡唑罗[1,5-a]嘧啶-7-胺(5)和3,6-二硝基-2-(三硝基甲基)吡唑罗[1,5-a]嘧啶-7-胺(7)。化合物3 (VD = 8549 m·s-1, ρ = 1.79 g·cm-3)和5 (VD = 8520 m·s-1, ρ = 1.80 g·cm-3)均表现出与RDX (VD = 8795 m·s-1, ρ = 1.80 g·cm-3)相似的高密度和爆轰速度。与RDX (VD = 8795 m·s-1, P = 34.9 GPa)相比,含有邻氨基硝基的化合物7具有更高的密度(1.82 g·cm-3)和更优异的爆轰性能(VD = 8867 m·s-1, P = 35.1 GPa)。与已合成的三硝基甲基含能化合物相比,化合物5和7均表现出较好的热稳定性(Td(5) = 155℃和Td(7) = 178℃)。此外,化合物5 (IS = 16 J, FS = 168 N)和7 (IS = 14 J, FS = 144 N)的灵敏度均低于RDX (IS = 7.4 J, FS = 120 N),表明化合物7作为高能量、低灵敏度的含能材料具有很大的应用潜力。
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来源期刊
Crystal Growth & Design
Crystal Growth & Design 化学-材料科学:综合
CiteScore
6.30
自引率
10.50%
发文量
650
审稿时长
1.9 months
期刊介绍: The aim of Crystal Growth & Design is to stimulate crossfertilization of knowledge among scientists and engineers working in the fields of crystal growth, crystal engineering, and the industrial application of crystalline materials. Crystal Growth & Design publishes theoretical and experimental studies of the physical, chemical, and biological phenomena and processes related to the design, growth, and application of crystalline materials. Synergistic approaches originating from different disciplines and technologies and integrating the fields of crystal growth, crystal engineering, intermolecular interactions, and industrial application are encouraged.
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