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首页> 外文期刊>Indian Journal of Chemical Technology >Alternate method for synthesis of 1,3,3-trinitroazetidine (TNAZ):Next generation melt castable high energy material
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Alternate method for synthesis of 1,3,3-trinitroazetidine (TNAZ):Next generation melt castable high energy material

机译:1,3,3-三硝基氮杂环丁烷(TNAZ)的另一种合成方法:下一代可熔融浇铸的高能材料

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The synthesis of 1,3.3-trimtroazetidine (TNAZ) from 2,2-dinitropropane-1,3-diol precursor derived from nitromethane is described.The cyciization of 1,3-dichloro-2,2-dinitropropane in presence of t-butyl amine to t-butylated azetidinc ring,followed by its nitration afforded target molecule TNAZ in minimum number of synthesis steps.TNAZ was characterized by elemental analysis,Spectral Energy Dispersive Analyser-X-ray (EDAX),and Scanning Electron Microscope (SEM) techniques.Thermolysis studies on TNAZ were undertaken using Differential Scanning Calorimetry (DSC) and Thermo Gravimetric (TG) techniques.The Fourier Transform Infrared (FTIR) of decomposition products of TNAZ revealed the evolution of oxides of nitrogen and -CN containing species suggesting the cleavage of C/N-NO_2 bond accompanied with the collapse of the ring structure.The sensitivity data obtained for the TNAZ indicated its sensitive nature towards external stimuli (Impact height (h_(50%)) for explosion > 47 cm;Friction insensitive up to > 36 kg).The theoretically predicted performance parameters suggest that TNAZ is energetically superior in terms of velocity of detonation (VOD:8.6 km/s) and power index (PI:182) compared to the conventionally used melt castable high explosive 2,4.6-trinitrotolucne (TNT) (VOD-6.66 km/s and PI-125).
机译:描述了由硝基甲烷衍生的2,2-二硝基丙烷-1,3-二醇前体合成1,3.3-三硝基氮杂环丁烷(TNAZ)。在叔丁基存在下1,3-二氯-2,2-二硝基丙烷的环化胺转化为叔丁基化的氮杂环丁烷环,然后硝化,以最少的合成步骤获得目标分子TNAZ。通过元素分析,X射线能谱分析仪(EDAX)和扫描电子显微镜(SEM)技术对TNAZ进行表征使用差示扫描量热法(DSC)和热重分析(TG)技术对TNAZ进行热解研究.TNAZ分解产物的傅立叶变换红外(FTIR)显示了氮和-CN物种的氧化物的演化,表明该化合物的裂解。 C / N-NO_2键伴随着环结构的塌陷。获得的TNAZ敏感性数据表明,其对外部刺激(冲击高度(h_(50%))>爆炸> 47 cm时具有敏感性);摩擦系数高达36公斤以上)。理论上预测的性能参数表明,与常规使用的可熔融浇铸的高炸药相比,TNAZ在爆炸速度(VOD:8.6 km / s)和功率指数(PI:182)方面在能量上优越2,4.6-三硝基甲苯(TNT)(VOD-6.66 km / s和PI-125)。

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