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首页> 外文期刊>Journal of molecular modeling >On the potential application of DFT methods in predicting the interaction-induced electric properties of molecular complexes. Molecular H-bonded chains as a case of study
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On the potential application of DFT methods in predicting the interaction-induced electric properties of molecular complexes. Molecular H-bonded chains as a case of study

机译:DFT方法在预测分子复合物相互作用诱导的电学性质方面的潜在应用。分子氢键链的研究

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A detailed analysis of the selected DFT functionals for the calculations of interaction-induced dipole moment, polarizability and first-order hyperpolarizability has been carried out. The hydrogen-bonded model chains consisting of HF, H _2CO and H _3N molecules have been chosen as a case study. The calculations of the components of the static electric properties using the diffuse Dunning's basis set (aug-cc-pVDZ) have been performed employing different types of density functionals (B3LYP, LC-BLYP, PBE0, M06-2X and CAM-B3LYP). Obtained results have been compared with those gained at the CCSD(T) level of theory. The counterpoise correction scheme, namely site-site function counterpoise, has been applied in order to eliminate basis set superposition error. The performed tests allow to conclude that the DFT functionals can provide a useful tool for prediction of the interaction-induced electric properties, however a caution has to be urged to their decomposition to the two- and many-body terms.
机译:已对所选DFT功能进行了详细分析,以计算相互作用引起的偶极矩,极化率和一阶超极化率。案例研究选择了由HF,H _2CO和H _3N分子组成的氢键模型链。使用不同类型的密度泛函(B3LYP,LC-BLYP,PBE0,M06-2X和CAM-B3LYP),使用扩散Dunning基组(aug-cc-pVDZ)对静电特性的成分进行了计算。将获得的结果与在CCSD(T)理论水平上获得的结果进行了比较。为了消除基组叠加误差,已经应用了平衡权校正方案,即站点-站点功能平衡。进行的测试可以得出结论,DFT功能可以提供一个有用的工具来预测相互作用引起的电学性质,但是必须警惕将其分解为两体和多体项。

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