Alía Jose M, Edwards Howell G M
Departamento de Química-Física, E.U.I.T.A., Universidad de Castilla-La Mancha, Ronda de Calatrava 7, 13071 Ciudad Real, Spain.
J Phys Chem A. 2005 Sep 8;109(35):7977-87. doi: 10.1021/jp051892y.
Vibrational properties (band position, Infrared and Raman intensities) of the acetonitrile C[triple bond]N stretching mode were studied in 27 gas-phase medium intensity (length range: = 1.71-2.05 angstroms; -deltaE range = 13-48 kJ/mol) hydrogen-bonded 1:1 complexes of CH3CN with organic and inorganic acids using density functional theory (DFT) calculations [B3LYP-6-31++G(2d,2p)]. Furthermore, general characteristics of the hydrogen bonds and vibrational changes in the OH stretching band of the acids were also considered. Experimentally observed blue-shifts of the C[triple bond]N stretching band promoted by the hydrogen bonding, which shortens the triple bond length, are very well reproduced and quantitatively depend on the hydrogen bond length. Both predicted enhancement of the infrared and Raman nu(C[triple bond]N) band intensities are in good agreement with the experimental results. Infrared band intensity increase is a direct function of the hydrogen bond energy. However, the predicted increase in the Raman band intensity increase is a more complex function, depending simultaneously on the characteristics of both the hydrogen bond (C[triple bond]N bond length) and the H-donating acid polarizability. Accounting for these two parameters, the calculated nu(C[triple bond]N) Raman intensities of the complexes are explained with a mean error of +/- 2.4%.
利用密度泛函理论(DFT)计算[B3LYP - 6 - 31++G(2d,2p)],研究了27种气相中等强度(长度范围:= 1.71 - 2.05埃;-ΔE范围 = 13 - 48 kJ/mol)的乙腈(CH₃CN)与有机和无机酸形成的1:1氢键复合物中乙腈C≡N伸缩振动模式的振动特性(谱带位置、红外和拉曼强度)。此外,还考虑了氢键的一般特征以及酸的OH伸缩振动带的振动变化。实验观察到氢键导致的C≡N伸缩振动带蓝移,这缩短了三键长度,计算结果很好地重现了这一现象,并且在定量上取决于氢键长度。预测的红外和拉曼ν(C≡N)谱带强度增强与实验结果吻合良好。红外谱带强度增加是氢键能量的直接函数。然而,预测的拉曼谱带强度增加是一个更复杂的函数,同时取决于氢键(C≡N键长)和供氢酸极化率的特征。考虑这两个参数后,复合物的计算ν(C≡N)拉曼强度的解释平均误差为±2.4%。