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Reliable theoretical treatment of molecular clusters: Counterpoise-corrected potential energy surface and anharmonic vibrational frequencies of the water dimer

机译:分子簇的可靠理论处理:平衡态校正的势能表面和二聚体的非谐振动频率

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Structure, properties and energetics of the water dimer were determined by counterpoise (CP)_corrected gradient optimization which a priori eliminates the basis set superposition error (BSSE). Calculations were carried out at the MP2 level with various basis sets up to the aug-cc-pVQZ one. Besides harmonic vibrational frequencies twelve-dimensional anharmonic frequencies were also determined using the second-order perturbation treatment. Harmonic and anharmonic frequencies were based on CP-corrected Hessians. The equilibrium geometry of the dimer differs from that determined by a standard optimization and the difference becomes small only for the largest basis set (aug-cc-pVQZ). The best theoretical estimate of the intermolecular oxygen-oxygen distance (2.92 A) is shorter than the experimental result of 2.95 A. An estimate of the complete basis set limit of the stabilization energy was obtained by extrapolating the stabilization energies as a function of the reciprocal size of the basis set; this value (21.05 kJ mol~(-1) is slightly smaller than other literature estimates. Adding the changes due to zero-point energy and temperature-dependent enthalpy terms (determined using anharmonic frequencies obtained from the CP-corrected Hessian) we obtain an estimate to the theoretical stabilization enthalpy at 375 K (12.76 kJ mol~(-1)) which is by 0.8-1.3 kJ mol~(-1) smaller than the literature results. Our theoretical value supports the very low limit of the experimental value. Red shift of the O-H stretching frequency accompanying formation of the dimer was determined at various theoretical levels and best agreement with the experimental value was found for anharmonic frequencies calculated with CP-corrected Hessians.
机译:水二聚体的结构,性质和能量是通过平衡度(CP)校正的梯度优化确定的,该优化可先验地消除基集叠加误差(BSSE)。在MP2级别进行了各种计算,直到aug-cc-pVQZ为止。除了谐波振动频率,还使用二阶扰动处理确定了十二维非谐频率。谐波和非谐波频率基于CP校正的黑森州。二聚体的平衡几何不同于通过标准优化确定的平衡几何,并且差异仅对于最大的基集(aug-cc-pVQZ)很小。分子间氧-氧距离(2.92 A)的最佳理论估计值短于2.95 A的实验结果。通过将稳定能作为倒数的函数进行外推,可以获得稳定能的完整基极极限的估计。基础集的大小;该值(21.05 kJ mol〜(-1)略小于其他文献估计值。加上零点能量和温度相关的焓项(使用从CP校正的Hessian获得的非谐波频率确定)所引起的变化,我们得出估计375 K(12.76 kJ mol〜(-1))时的理论稳定焓,比文献结果小0.8-1.3 kJ mol〜(-1),我们的理论值支持实验值的极低极限在不同的理论水平上确定了伴随着二聚体形成的OH拉伸频率的红移,并且发现与用CP校正的Hessian计算的非谐频率的实验值最佳吻合。

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