坐标Хδ0中(二氟氨基)三硝基甲烷力场的理论研究

O. Averyanova, Alexander V. Belik
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摘要

现代化学家研究人员的实际问题是研究化合物分子的性质。计算机工程和量子化学领域的最新成就,使得用理论计算来研究研究化合物的各种理化参数成为可能。计算方法比实验方法更安全、更经济,大大简化了计算任务。值得注意的是,甲烷衍生物由于其广泛使用,目前也引起了研究的兴趣。本文用量子化学方法研究了(二氟氨基)三硝基甲烷分子的力场。密度泛函理论(DFT) B3LYP的Becke-Lee-Yang-Parr方法的混合势为6-311++G(3df, 3pd),被选择作为所做工作的主要近似,因为当使用它时,结果的质量最好。此外,在目前的工作中,作为化学(自然)坐标的替代品,选择了新的坐标Xδ0,它允许考虑扭转振动。本工作中的计算是使用Gaussian和GaussView程序进行的,这些程序旨在计算大量化学反应的性质和特征。本文利用所提出的方法对(二氟氨基)三硝基甲烷分子的几何结构进行了优化,考虑了这些化合物的几何参数,特别是计算了与该分子的最小能量相对应的价角、二面角和长键。首次计算了F2NC(NO2)3的广义力系数,并对所研究分子中化合物的“刚度”进行了评价。计算并分析了所研究化合物在谐波近似下的正常振动频率(波数)。并将所得波数与实验数据进行了比较。所得结果表明理论与实验结果吻合较好。给出了量子化学计算所得的(二氟氨基)三硝基甲烷的振动谱的一般视图。讨论了应用B3LYP 6-311++G(3df, 3pd)方法计算法向振动频率和力系数的可能性。
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Theoretical research of the force field of (difluoroamino)trinitromethane in the coordinates Хδ0
Actual problem of modern chemists-researchers is studying the properties of molecules of compounds. The latest achievements in the field of computer engineering and quantum chemistry make it possible to research various physicochemical parameters of studying compounds using theoretical calculations. Calculation methods can greatly simplify the task, as they are safer and more economical than experiment. It is noted that methane derivatives are also currently of interest for research in connection with their widespread use. This paper is devoted to the study of the force fields of molecule of (difluoro-amino)trinitromethane using quantum chemical calculations. The Becke-Lee-Yang-Parr method of density functional theory (DFT) B3LYP with a hybrid potential of 6-311++G(3df, 3pd) was chosen as the main approximation for the work performed, since when using it, the best quality of the result is noted. Also, in the present work, as an alternative to chemical (natural) coordinates, new coordinates Xδ0 were chosen, which allows one to take into account torsional vibrations. The calculations presented in this work were performed using the Gaussian and GaussView programs, designed to calculate a large number of properties and characteristics of chemical reactions. In this paper, using the proposed approach, the geometry of the molecule of (difluoroamino)tri-notromethane has been optimized, the geometric parameters of these compound were considered, in particular, the valence angles, dihedral angles, and long bonds were calculated, corresponding to the minimum energy of this molecule. For the first time, generalized force coefficients for F2NC(NO2)3 were calculated, and the "stiffness" of the chemical compounds of the molecule under study was evaluated. The frequencies of normal vibrations (wave numbers) for the studied compound in the harmonic approximation were calculated and analyzed. A comparison of the obtained wave numbers with experimental data is given. The results obtained indicate a satisfactory agreement between theory and experiment. A general view of the vibrational spectrum of (difluoroamino)trinotromethane obtained as a result of quantum chemical calculations is presented. The conclusion is drawn about the possibilities of applying the B3LYP 6-311++G(3df, 3pd) approach for calculating the frequencies of normal vibrations and force coefficients.
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