首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Theoretical Studies on the Vibrational Spectra,Thermodynamic Properties,Detonation Properties,and Pyrolysis Mechanisms for Polynitroadamantanes
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Theoretical Studies on the Vibrational Spectra,Thermodynamic Properties,Detonation Properties,and Pyrolysis Mechanisms for Polynitroadamantanes

机译:多硝基金刚烷的振动光谱,热力学性质,爆轰性质及热解机理的理论研究

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To look for high energy density materials (HEDM),the relationships between the structures and the performances of polynitroadamantanes (PNAs) were studied.The assigned infrared spectra of PNAs obtained at the density functional theory (DFT) B3LYP/6-31G* level were used to compute the thermodynamic properties on the basis of the principle of statistical thermodynamics.The thermodynamic properties are linearly related with the number of nitro groups as well as with the temperatures.Detonation properties of PNAs were evaluated by using the Kamlet-Jacobs equation based on the calculated densities and heats of formation for titled compounds,and it is found that only when the number of nitro groups of PNA is equal to or more than eight can it be possible for PNAs to be used as HEDMs.The relative stabilities of PNAs were studied by the pyrolysis mechanism using the UHF-PM3 method.The homolysis of the C-NO_2 bond is predicted to be the initial step of thermal decomposition.The activation energies (E_a) for the homolysis decrease with the number of nitro groups being increased on the whole.The stability order of dinitroadamantane isomers derived from the interactions among nitro groups is consistent with what is determined by E_a.The relations between the E_a's and the electronic structure parameters were discussed.In combination with the stability,PNA (1,2,3,4,5,6,7,8,9,10-) is recommended as the target of HEDM with insensitivity.
机译:为了寻找高能量密度材料(HEDM),研究了聚硝基金刚烷(PNAs)的结构与性能之间的关系。在密度泛函理论(DFT)B3LYP / 6-31G *水平获得的PNA的指定红外光谱为根据统计热力学原理计算热力学性质,热力学性质与硝基基团数目和温度成线性关系.PAM的爆轰性质通过基于以下条件的Kamlet-Jacobs方程评估计算得到的标题化合物的密度和形成热,发现只有当PNA的硝基数目等于或大于8时,才能将PNA用作HEDM。PNA的相对稳定性为利用UHF-PM3方法通过热解机理进行了研究.C-NO_2键的均相分解预计是热分解的第一步。整体上,随着硝基数目的增加,均一化的IES(E_a)降低。由硝基之间的相互作用衍生的二硝基金刚烷异构体的稳定性顺序与E_a所确定的一致.E_a与电子之间的关系结合稳定性,推荐使用PNA(1,2,3,4,5,6,7,8,9,10-)作为不敏感的HEDM靶标。

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