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DENSITY FUNCTIONAL THEORY STUDIES ON THE STRUCTURE, THERMODYNAMIC FUNCTIONS AND HEAT OF FORMATION OF N_8 CUBANE

机译:N_8 Cubane的结构,热力学功能和形成的密度功能理论研究

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With the increasing interest in high energy density materials(HEDM), there are more and more theoretical studies on mono-nitrogen clusters such as Ng which is predicted to be a potential HEDM. In this article, we have optimized the geometries of Ng and its charged and protonated species using the density functional theory (DFT) at the B3LYP level. Geometry optimizations have also been performed on Ng using ab initio method at the MP2 level for comparison. The standard 6-31G~* and 6-311G~* gaussian basis sets were employed. The geometries obtained by the DFT methods are very close to the high-level ab initio results. The relative energies of Ng to 4N2 derived from the DFT calculations are also quite close to those from the ab initio methods. The vertical and adiabatic ionization potential, electron and proton affinities have been calculated. Vibrational analyses have been performed and the standard thermodynamic functions of Ng were computed in the range of 200~600 K. The heat of formaion has been derived from the atomization (a), decomposition (b) and isodesmic (c) reactions, and the obtained results are 1919.90, 1863.03 and 1900.10 kJ/mol, respectively. To check the reliability of the calculated results, the heats of formation of CgHg and the species involved in the reactions have been calculated too from the atomization reactions (d) and the isodesmic reaction (e) (for C_8H_8 only). It is found that the heats of formation calculated from the atomization energies are always much larger than the experimental results, while those from the isodesmic reaction are comparatively much better. For C_8H_8, the Δ_fH_(298°) obtained from the isodesmic reaction is 37.3 kJ/mol larger than the experimental value, while that from the atomization reaction is 154.8 kJ/mol too larger. If the deviation 37.3 kJ/mol is used to correct the Δ_fH_(298°) of N_8 calculated from the isodesmic reaction (c), the obtained result 1865.70 kJ/mol is almost identical to that from the decomposition reaction (b) (1863.03 kJ/mol). This seems to show that the Δ_fH_(298°) derived from the decomposition reaction at the B3LYP/6-311G~* level is rather reliable. The high energy content and specific impulse show that N_8 is a potential explosive with high performance.
机译:随着对高能密度材料(HEDM)的兴趣越来越多,越来越多的理论研究对单氮簇,例如NG,其预测是潜在的HEDM。在本文中,我们使用B3LYP水平的密度泛函理论(DFT)优化了NG的几何形状及其充电和质子化物种。在MP2电平的AB Initio方法中也已经在NG上执行几何优化,以进行比较。使用标准的6-31G〜*和6-311G〜*高斯基础集。通过DFT方法获得的几何形状非常接近高级AB Initio结果。从DFT计算导出的NG至4N2的相对能量也非常接近来自AB Initio方法的。已经计算了垂直和绝热电离电位,电子和质子亲和力。已经进行了振动分析,并且在200〜600k的范围内计算了NG的标准热力学功能。植物的热量是源自雾化(A),分解(B)和Isodsmic(C)反应,以及获得的结果分别为1919.90,1863.03和1900.10 kJ / mol。为了检查计算结果的可靠性,CGHG的形成热量和参与反应中的物种也从雾化反应(D)和体育反应(E)(仅用于C_8H_8)计算。发现从雾化能量计算的形成热量总是比实验结果大得多,而来自体内反应的那些相对较好。对于C_8H_8,从体性反应获得的Δ_fH_(298°)比实验值大37.3kJ / mol,而来自雾化反应的液体为154.8kJ / mol太大。如果使用偏差37.3 kj / mol来校正由位于体内反应(c)计算的N_8的δ_fh_(298°),则得到的结果1865.70kj / mol几乎与分解反应(b)(1863.03kj)相同/ mol)。这似乎表明Δ_fh_(298°)衍生自B3Lyp / 6-311g〜*水平的分解反应是相当可靠的。高能量含量和特定的脉冲表明,N_8是具有高性能的潜在爆炸性。

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