首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >A study of two metal energetic complexes based on 4-amino-3-(5-tetrazolate)-furazan: synthesis, crystal structure, thermal behaviors and energetic performance
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A study of two metal energetic complexes based on 4-amino-3-(5-tetrazolate)-furazan: synthesis, crystal structure, thermal behaviors and energetic performance

机译:基于4-氨基-3-(5-四唑酸酯)-呋喃山的两种金属高能配合物的研究:合成,晶体结构,热行为和高能性能

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In this contribution, two metal energetic complexes Co(HCONHNH2)(2)(AFT)(2)center dot H2O (1) and [Pb (HCONHNH2)(2)(AFT)(2)](n) (2) (HCONHNH2=formyl hydrazide and HAFT=4-amino-3-(5-tetrazolate)-furazan) have been synthesized and characterized. The structures of compound 1 and 2 are characterized by single crystal X-ray diffraction. The tests show that 1 possesses One-dimensional (1D) chain structure and 2 exhibits two-dimensional (2D) energetic metal-organic framework (MOF). The thermal decomposition processes of compounds have been investigated by MS-FTIR-DSC-TG coupling technique. It's worth noting that both of them exhibit higher thermal stabilities. Moreover, gaseous products generated after thermal decomposition of compound 1 and 2 are CO2, NO2, N2O, CO, HCN, NH3, H2O, N-2. The standard molar enthalpies of formation of 1 and 2 are calculated to be -4501.25 kJ.mol(-1) and -1091.13 kJ.mol(-1), respectively. Detonation velocity and detonation pressure are respectively 9.32 km.s(-1), 42.13 GPa for 1 and 5.62 km.s(-1), 18.36 GPa for 2. Surprisingly, compound 2 exhibits promising detonation velocity and detonation pressure, which are higher than those of TNT, RDX and HMX. The above-mentioned information on thermal behavior is available to analyze and evaluate the stability and thermal safety of 1 and 2. The sensitivity tests reveal they possess excellent insensitivities to impact and friction. All the characterizations show that they can be used as potential energetic materials.
机译:在此贡献中,两个金属高能络合物Co(HCONHNH2)(2)(AFT)(2)中心点H2O(1)和[Pb(HCONHNH2)(2)(AFT)(2)](n)(2)(已经合成并表征了HCONHNH 2 =甲酰肼和HAFT = 4-氨基-3-(5-四唑酸酯)-呋喃山)。化合物1和2的结构通过单晶X射线衍射表征。测试表明1具有一维(1D)链结构,而2具有二维(2D)高能金属-有机骨架(MOF)。通过MS-FTIR-DSC-TG偶联技术研究了化合物的热分解过程。值得注意的是,它们都具有较高的热稳定性。此外,化合物1和2热分解后产生的气态产物为CO 2,NO 2,N 2 O,CO,HCN,NH 3,H 2 O,N-2。计算得出的1和2的标准摩尔焓分别为-4501.25 kJ.mol(-1)和-1091.13 kJ.mol(-1)。化合物1的爆炸速度和爆炸压力分别为9.32 km.s(-1),42.13 GPa和2分别为5.62 km.s(-1),18.36 GPa。令人惊讶的是,化合物2的爆炸速度和爆炸压力更高而不是TNT,RDX和HMX。以上有关热行为的信息可用于分析和评估1和2的稳定性和热安全性。敏感性测试表明,它们对冲击和摩擦具有极好的不敏感性。所有特征表明它们可以用作潜在的高能材料。

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