首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Toward Selection of Efficient Density Functionals for van der Waals Molecular Complexes: Comparative Study of C-H center dot center dot center dot pi and N-HF center dot center dot center dot pi Interactions
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Toward Selection of Efficient Density Functionals for van der Waals Molecular Complexes: Comparative Study of C-H center dot center dot center dot pi and N-HF center dot center dot center dot pi Interactions

机译:范德华分子复合物的高效密度泛函的选择:C-H中心点中心点中心点pi和N-HF中心点中心点中心点pi相互作用的比较研究

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We have evaluated the performance of two of the recently developed density functionals (M06-2X and B2PLYP-D), which are widely used, by considering three important prototype systems, including benzeneacetylene, benzenemethane, and benzeneammonia, possessing C-H-...pi or N-H-...pi interactions. Computational results are compared with the available experimental data. Considered density functionals are from two different classes: hybrid meta density functional (M06-2X) and double hybrid density functional (B2PLYP-D). The performance of a range of basis sets (6-31G(d), 6-31+G(d), 6-31+G(d,p), 6-311G(d,p), 6-311+G(d,p), aug-cc-pVXZ (X = D, T, Q)) with the above-mentioned two density functionals was evaluated. Comparison of the results includes Poples basis sets versus Dunnings correlation consistent basis sets with the M06-2X and B2PLYP-D functionals considered in this study. The basis set effect on geometrical parameters, dissociation energies, and selected vibrational frequency shifts was thoroughly analyzed. We have addressed whether the counterpoise corrections with geometry optimizations and vibrational frequencies are important. Our computational study reveals that calculations carried out with smaller basis sets very well reproduce the reported experimental values of dissociation energies. The present study also shows that using the very large Dunnings correlation consistent basis set worsens the results. The necessity of including counterpoise correction for binding energies depends on the system and the type of method used. In general, vibrational frequency calculations using these DFT functionals generate characteristic red shifts for the C-H-...pi or N-H-...pi interactions in the complexes.
机译:通过考虑三个重要的原型系统,包括具有CH -... pi或NH -... pi相互作用。将计算结果与可用的实验数据进行比较。所考虑的密度泛函来自两个不同的类别:杂化元密度泛函(M06-2X)和双重杂化密度泛函(B2PLYP-D)。一系列基集(6-31G(d),6-31 + G(d),6-31 + G(d,p),6-311G(d,p),6-311 + G)的性能(d,p),评价了具有上述两个密度泛函的ug-cc-pVXZ(X = D,T,Q)。结果比较包括本研究中考虑的具有M06-2X和B2PLYP-D功能的Poples基集与Dunnings相关一致基集。基本设置对几何参数,离解能和选定的振动频率偏移的影响进行了分析。我们已经解决了通过几何优化和振动频率进行平衡的校正是否重要。我们的计算研究表明,以较小的基集进行的计算很好地再现了解离能的实验值。本研究还表明,使用非常大的Dunnings相关一致基集会使结果恶化。包括对结合能进行平衡校正的必要性取决于系统和所用方法的类型。通常,使用这些DFT功能进行振动频率计算会生成复合物中C-H -... pi或N-H -... pi相互作用的特征性红移。

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