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碱金属5-硝基四唑盐:有望替代起爆药中现役叠氮化铅的物质。

Alkali metal 5-nitrotetrazolate salts: prospective replacements for service lead(II) azide in explosive initiators.

作者信息

Klapötke Thomas M, Sabaté Carles Miró, Welch Jan M

机构信息

Department of Chemistry and Biochemistry, Ludwig-Maximilian University of Munich (LMU), Butenandstr. 5-13 (D), 81377 Munich, Germany.

出版信息

Dalton Trans. 2008 Dec 7(45):6372-80. doi: 10.1039/b811410b. Epub 2008 Oct 9.

Abstract

A family of sensitive energetic salts of the 5-nitrotetrazolate anion with alkali metal cations (Li+, Na+, K+, Rb+ and Cs+) were synthesized either by the digestion of an acid copper salt of 5-nitrotetrazole with a suitable metal hydroxide, or alternatively by reaction of ammonium 5-nitrotetrazolate with a suitable metal base (MOH, MHCO3 or M2CO3) in aqueous or alcoholic solution. All the compounds were characterized by analytical methods (elemental analysis and mass spectrometry) and spectroscopic methods (NMR and vibrational spectroscopy). The lighter metal salts and , incorporate three and two crystal water molecules in the structure, respectively, whereas the heavier alkali metal derivatives form anhydrous species, and thus showed enhanced sensitivity to friction and shock. In addition, the crystal structure of each of the new materials was determined by X-ray diffraction techniques ( and : monoclinic, P2(1)/c; : triclinic, P1; : monoclinic, Cc and : monoclinic, C2/c). The thermal stability of compounds was assessed by differential scanning calorimetry (DSC) measurements showing significant thermal stability. Lastly, the energies of combustion of and were measured experimentally using oxygen bomb calorimetry (, -1340(15) cal g(-1) and , -1200(20) cal g(-1)) and was used to calculate their standard molar heats of formation (, -610(55) kJ mol(-1) and , -360(65) kJ mol(-1)).

摘要

合成了一族由5-硝基四唑阴离子与碱金属阳离子(Li⁺、Na⁺、K⁺、Rb⁺和Cs⁺)形成的敏感含能盐,方法是用合适的金属氢氧化物消化5-硝基四唑的酸性铜盐,或者用5-硝基四唑铵与合适的金属碱(MOH、MHCO₃或M₂CO₃)在水溶液或醇溶液中反应。所有化合物均通过分析方法(元素分析和质谱)和光谱方法(核磁共振和振动光谱)进行了表征。较轻的金属盐 和 在结构中分别包含三个和两个结晶水分子,而较重的碱金属衍生物形成无水物质,因此对摩擦和冲击表现出更高的敏感性。此外,通过X射线衍射技术确定了每种新材料的晶体结构( 和 :单斜晶系,P2(1)/c; :三斜晶系,P1; :单斜晶系,Cc; :单斜晶系,C2/c)。通过差示扫描量热法(DSC)测量评估了化合物的热稳定性,结果显示出显著的热稳定性。最后,使用氧弹量热法实验测量了 和 的燃烧能( ,-1340(15) cal g⁻¹; ,-1200(20) cal g⁻¹),并用于计算它们的标准摩尔生成热( ,-610(55) kJ mol⁻¹; ,-360(65) kJ mol⁻¹)。

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