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Theoretical study of the molecular structure and normal coordinate analysis of hydrogen cyanide addition compound with boron trifluoride, HCN-BF3

机译:氰化氢与三氟化硼加成物HCN-BF3的分子结构和正构坐标分析的理论研究

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An extensive HF, MP2, B3LYP and CCSD study of the molecular structure and normal vibrations have been performed for the HCN-BF3 molecule. Calculations with a wide range of basis sets were classified into two groups based on the optimized N-B bond distance. The results for Group A are compared with the experimental structure of the solid phase molecules. The N-B lengths of Group A are approximately linear related to the N-B-F valence angles and also to the N-B stretching frequencies. HF/DZV calculation was used to represent the solid phase model. The N-B lengths of Group B are close to those of the gas phase molecule and both N-B-F angles and N-B sensitive frequencies have roughly the same values. Differences in the chemical bond between gaseous and solid phase HCN-BF3 are discussed based on the calculated force constants, vibrational frequencies and potential energy distributions. Vibration mode analysis indicates that the nu(4) mode in the 600-700 cm(-1) region can be assigned to the BF3 symmetric deformation, which shifts upon B-10/B-11 isotopic substitution. The nu(5) mode which is insensitive to isotope substitution and changes band position with the N-B distance is assigned to the N-B bond stretching vibration. (C) 2007 Elsevier B.V. All rights reserved.
机译:对HCN-BF3分子进行了分子结构和正常振动的广泛HF,MP2,B3LYP和CCSD研究。根据优化的N-B键距,将具有广泛范围的基集的计算分为两组。将A组的结果与固相分子的实验结构进行比较。组A的N-B长度与N-B-F化合价以及N-B拉伸频率大致成线性关系。 HF / DZV计算用于表示固相模型。 B族的N-B长度接近气相分子的长度,并且N-B-F角和N-B敏感频率都具有大致相同的值。基于计算的力常数,振动频率和势能分布,讨论了气相和固相HCN-BF3之间化学键的差异。振动模式分析表明,在600-700 cm(-1)区域中的nu(4)模式可以分配给BF3对称变形,该变形在B-10 / B-11同位素替代后移动。对同位素取代不敏感并且随着N-B距离改变能带位置的nu(5)模式被分配给N-B键拉伸振动。 (C)2007 Elsevier B.V.保留所有权利。

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