首页> 外文期刊>Journal of Molecular Structure >Theoretical study of (XYO center dot center dot H center dot center dot OXY)(+) (X, Y=H, F, Cl) systems. From the asymmetrical to the symmetrical (O center dot center dot center dot H center dot center dot center dot O)(+) hydrogen bonds
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Theoretical study of (XYO center dot center dot H center dot center dot OXY)(+) (X, Y=H, F, Cl) systems. From the asymmetrical to the symmetrical (O center dot center dot center dot H center dot center dot center dot O)(+) hydrogen bonds

机译:(XYO中心点中心点H中心点中心点OXY)(+)(X,Y = H,F,Cl)系统的理论研究。从不对称到对称(O中心点中心点中心点H中心点中心点中心点O)(+)氢键

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The hydrogen bonds in (XYO...H...OXY)(+) systems (X, Y = H, Fl, Cl) are investigated theoretically by using DFT-type B3LYP functional with the 6-311++G(2d, 2p) basis set. The optimized geometries, binding energies, harmonic vibrational frequencies and intensities, and the natural charges on the different atoms are calculated. The proton affinities of the monomers are calculated as well. When the proton is bonded between H2O, HFO, Cl2O and F2O, the hydrogen bond is symmetrical and the O...O distances are short (2.40-2.48 Angstrom). In the other systems, the proton is not centered and the O...O distances range between 2.44 and 2.68 Angstrom. The binding energies vary within a broad range, from 22.2 to 143.5 kJ mol(-1). The largest binding energies are predicted for the symmetrical (O...H...O)(+) bonds. The harmonic frequencies are calculated between 750 and 2400 cm(-1), the lowest frequencies being predicted for the symmetrical systems. The charge transfer occurring from the XYO molecule to the XHOH+ cation comprises between 0.08 and 0.22e. The correlations between the OH and O...O distances and the correlations between the elongations of the OH bond and the binding energies or the variations of the electronic charges on the O and H atoms illustrate the large differences between the symmetrical and asymmetrical hydrogen bonds. (C) 2004 Elsevier B.V. All rights reserved.
机译:通过使用具有6-311 ++ G(2d)功能的DFT型B3LYP对(XYO ... H ... OXY)(+)系统(X,Y = H,Fl,Cl)中的氢键进行理论研究,2p)基础集。计算出优化的几何形状,结合能,谐波振动频率和强度以及不同原子上的自然电荷。还计算单体的质子亲和力。当质子键合在H2O,HFO,Cl2O和F2O之间时,氢键对称且O ... O距离短(2.40-2.48埃)。在其他系统中,质子未居中,O.O距离在2.44至2.68埃之间。结合能在22.2至143.5 kJ mol(-1)的较大范围内变化。对称(O ... H ... O)(+)键的最大结合能被预测。计算出的谐波频率在750和2400 cm(-1)之间,最低频率是为对称系统预测的。从XYO分子到XHOH +阳离子的电荷转移介于0.08和0.22e之间。 OH和O ... O距离之间的相关性以及OH键的伸长率与结合能之间的相关性或O和H原子上电子电荷的变化说明了对称氢键和非对称氢键之间的巨大差异。 (C)2004 Elsevier B.V.保留所有权利。

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