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Synthesis,characterization and thermal behavior of hydrazinium nitroformate (HNF) and its new N-alkyl substituted derivatives

机译:硝基甲酸肼盐(HNF)及其新的N-烷基取代衍生物的合成,表征和热行为

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Two new derivatives of hydrazinium nitroformate (HNF) viz.,mono methyl hydrazinium nitroformate (MMHNF) and dimethyl hydrazinium nitroformate (DMHNF) have been synthesized and characterized by elemental,spectral and thermal analysis.The nitration of isopropanol using fuming nitric acid and sulphuric acid yielded nitroform which on neutralization with equivalent quantities of hydrazine hydrate yielded HNF,whereas neutralization with methyl hydrazine and dimethyl hydrazine solution in xylene solvent gave title compounds MMHNF and DMHNF respectively.MMHNF and DMHNF were thermally stable up to 128-137degC whereas the decomposition of HNF commenced at 120degC.The impact sensitivity data established relatively less susceptibility of MMHNF and DMHNF than,that of the HNF.Performance of MMHNF and DMHNF was also predicted theoretically by applying Linear Output Thermodynamic User friendly Software for Energetic Systems (LOTUSES) code.Out of the three compounds synthesized,HNF finds potential application as a eco-friendly oxidizer and MMHNF may find application as a potential high performance energetic material and DMHNF appears to be potential ingredient for melt castable high explosive formulations.
机译:合成并合成了两种新的亚硝酰肼(HNF)衍生物,即亚硝酸单甲基肼鎓(MMHNF)和亚甲基二甲基肼鎓(DMHNF),并通过元素,光谱和热分析对其进行了表征。生成亚硝酸盐,经等量水合肼中和后生成HNF,然后在二甲苯溶剂中分别用甲基肼和二甲基肼中和得到标题化合物MMHNF和DMHNF.MMHNF和DMHNF在高达128-137degC的温度下均具有热稳定性,而HNF分解始于120°C。冲击敏感度数据建立的MMHNF和DMHNF的敏感性要比HNF低.MMHNF和DMHNF的性能在理论上也通过使用线性热能用户友好的能量系统软件(LOTUSES)代码进行了预测。 HNF合成了这三种化合物,发现了潜在的应用作为一种环保型氧化剂和MMHNF的潜在应用可能是潜在的高性能高能材料,而DMHNF似乎是可熔融浇铸的高爆炸配方的潜在成分。

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