首页> 外文期刊>The Journal of Chemical Physics >Rotational constants of all H/D substituted water trimers: Coupling of intermolecular torsional and symmetric stretching modes
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Rotational constants of all H/D substituted water trimers: Coupling of intermolecular torsional and symmetric stretching modes

机译:所有H / D取代的水三聚体的旋转常数:分子间扭转和对称拉伸模式的耦合

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A four-dimensional (4D) intermolecular potential energy surface (IPES) for the water trimer was calculated in the subspace of the three torsional coordinates and the symmetric intermolecular stretch coordinate, employing high-level ab initio theory. Torsionally adiabatic potential energy curves for the intermolecular symmetric stretching vibration were constructed based on this IPES. They were used to calculate the symmetric stretch fundamentals and stretching-averaged interoxygen R(O…O) distances and , for the n = 0-6 torsional levels of (H_2O)_3 and (D_2O)_3. and increase with n up to n = 5, and decrease for n = 6. Torsionally averaged rotational constants A, B, and C of all 20 isotopomers of water trimer, for the torsional levels n = 0, 5 and 6, were obtained by averaging the inverse inertia tensor over the 3D torsional wave functions. Two approaches were examined: (i) setting the interoxygen R(O…O) distance to a fixed value, independent of torsional excitation; (ii) effectively incorporating the vibrational averaging due to the intermolecular symmetric stretching mode by using the appropriate and values to define the R(O…O) distances for the isotopomers in the torsional state n. Both approaches yielded n = 0, 5 rotational constants in good agreement with experiment. However, only approach (ii) reproduced the experimentally observed decrease in the rotational constants A and B upon 5 <- 0 torsional excitation. Fixing the R(O…O) distances to R_H and R_D values obtained by fitting the 3D torsionally averaged rotational constants to the experimental values for (H_2O)_3 and (D_2O)_3, only marginally improved the agreement with experiment for other isotopomers.
机译:使用高级从头算原理,在三个扭转坐标和对称的分子间拉伸坐标的子空间中,计算了水三聚体的二维(4D)分子间势能面(IPES)。基于该IPES构造了分子间对称拉伸振动的扭转绝热势能曲线。它们用于计算n = 0-6扭转级(H_2O)_3和(D_2O)_3的对称拉伸基础和拉伸平均间氧R(O…O)距离随着n的增加而增加,直到n = 5,并且在n = 6时减小。对于扭转水平n = 0,5,水三聚体的所有20个异构体的扭转平均旋转常数A,B和C。通过对3D扭转波函数上的反惯性张量求平均来获得6和6。研究了两种方法:(i)将互氧R(O…O)的距离设置为固定值,而与扭转激励无关。 (ii)通过使用适当的值定义扭转状态n下的等位异构体的R(O…O)距离,有效地合并由于分子间对称拉伸模式引起的振动平均。两种方法均产生n = 0、5个旋转常数,与实验吻合良好。但是,只有方法(ii)再现了在5 <-0扭转激励下实验观察到的旋转常数A和B的降低。将R(O…O)距离固定为通过将3D扭转平均旋转常数拟合为(H_2O)_3和(D_2O)_3的实验值而获得的R_H和R_D值,只能稍微改善与其他同位异构体的实验一致性。

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