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Energetic materials with promising properties: synthesis and characterization of polynitro compounds

机译:具有有前途的性质的能量材料:聚硝基化合物的合成和表征

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Four energetic polynitro derivativeswere designed, synthesized, and fully characterized.The structures of the resulting compounds 2,2,2-trinitroethyl 2,4,6-trinitrobenzoate(5), bis(2,2,2-trinitroethyl) 4,6-dinitroisophthalate(6), bis(2,2,2-trinitroethyl) 2,5-dinitroterephthalate(7) and bis(2,2,2-trinitroethyl) 2,4,6-trinitroisophthalate (8) were further confirmed by X-ray diffraction studies. Physicochemical andenergetic properties including density, thermal stability, and sensitivity were investigated, and energeticproper-ties (e.g., detonation velocities and detonation pressures) were calculated using EXPLO5 code. Most of the polynitro esters decompose at temperatures over 180 °C (except for 6: 171.6 °C), exhibit good thermal stability. Furthermore, the performance calculations gave detonation pressures and velocities for the ester derivatives in a range of 30.4-32.9 GPa and 8267-8559 m s-1, respectively. The esteryl-bridgedcompounds possess acceptable impact sensitivities (14-22 J)andfriction sensitivities (240-360 N. Thus, these compounds could be candidates as promising energetic materials.
机译:四个高能多硝基derivativeswere设计,合成,并将得到的化合物的完全characterized.The结构2,2,2- trinitroethyl 2,4,6- trinitrobenzoate(5),双(2,2,2- trinitroethyl)4,6-二硝基苯甲酸酯(6),双(2,2,2-三乙基)2,5-二硝基苯二甲酸酯(7)和双(2,2,2-三氨基乙基)2,4,6-三氨苄酸酯(8)通过X-进一步证实射线衍射研究。研究了包括密度,热稳定性和灵敏度的物理化学和能量特性,使用Explo5码计算精力备率(例如,爆炸速度和爆炸压力)。大多数多硝基酯在超过180℃的温度下分解(6:171.6℃除外),表现出良好的热稳定性。此外,性能计算分别在30.4-32.9GPa和8267-8559 m S-1的范围内对酯衍生物的爆炸压力和速度进行了爆轰压力和速度。所述esteryl-bridgedcompounds具有可接受的冲击灵敏度(14-22 J)的andfriction灵敏度(240-360 N.因此,这些化合物可能是候选作为有前途的高能材料。

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