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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Quantum Theory of Atoms in Molecules Charge-Charge Flux-Dipole Flux Models for the Infrared Intensities of X2CY (X = H,F,Cl;Y = O,S) Molecules
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Quantum Theory of Atoms in Molecules Charge-Charge Flux-Dipole Flux Models for the Infrared Intensities of X2CY (X = H,F,Cl;Y = O,S) Molecules

机译:X2CY(X = H,F,Cl; Y = O,S)分子的红外强度的分子电荷-电荷-偶极子通量模型中的原子量子理论

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The molecular dipole moments,their derivatives,and the fundamental IR intensities of the X2CY (X = H,F,Cl;Y = O,S) molecules are determined from QTAIM atomic charges and dipoles and their fluxes at the MP2/6-311++G(3d,3p) level.Root-mean-square errors of +-0.03 D and +-1.4 km mol~(-1) are found for the molecular dipole moments and fundamental IR intensities calculated using quantum theory of atoms in molecules (QTAIM) parameters when compared with those obtained directly from the MP2/6-311++G(3d,3p) calculations and +-0.05 D and 51.2 km mol"1 when compared with the experimental values.Charge (C),charge flux (CF),and dipole flux (DF) contributions are reported for all the normal vibrations of these molecules.A large negative correlation coefficient of -0.83 is calculated between the charge flux and dipole flux contributions and indicates that electronic charge transfer from one side of the molecule to the other during vibrations is accompanied by a relaxation effect with electron density polarization in the opposite direction.The characteristic substituent effect that has been observed for experimental infrared intensity parameters and core electron ionization energies has been applied to the CCFDF/QTAIM parameters of F2CO,Cl2CO,F2CS,and Cl2CS.The individual atomic charge,atomic charge flux,and atomic dipole flux contributions are seen to obey the characteristic substituent effect equation just as accurately as the total dipole moment derivative.The CH,CF,and CC1 stretching normal modes of these molecules are shown to have characteristic sets of charge,charge flux,and dipole flux contributions.
机译:X2CY(X = H,F,Cl; Y = O,S)分子的分子偶极矩,其导数和基本IR强度由QTAIM原子电荷和偶极子及其在MP2 / 6-311处的通量确定++ G(3d,3p)级。根据原子的量子理论计算出的分子偶极矩和基本IR强度,发现均方根误差为+ -0.03 D和+ -1.4 km mol〜(-1)。与直接从MP2 / 6-311 ++ G(3d,3p)计算获得的分子参数(QTAIM)和与实验值比较的+ -0.05 D和51.2 km mol“ 1相比。电荷(C),报告了这些分子所有正常振动的电荷通量(CF)和偶极通量(DF)贡献。电荷通量和偶极通量贡献之间的较大负相关系数为-0.83,表明电子电荷从一个振动过程中分子的另一侧伴随着电子密度的弛豫效应y极化方向相反。已将实验红外强度参数和核心电子电离能观察到的特征取代作用应用于F2CO,Cl2CO,F2CS和Cl2CS的CCFDF / QTAIM参数。单个原子电荷,原子电荷通量和原子偶极子通量贡献可以像总偶极矩导数一样精确地服从特征取代基效应方程。这些分子的CH,CF和CC1拉伸正态模具有电荷,电荷的特征集。通量和偶极子通量贡献。

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