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Performance of Several Density Functional Theory Methods on Describing Hydrogen-Bond Interactions

机译:几种描述氢键相互作用的密度泛函理论方法的性能

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We have investigated eleven density functionals,including LDA,PBE,mPWPW91,TPSS,B3LYP,X3LYP,PBEO,03LYP,B97-1,MPW1K,and TPSSh,for their performances on describing hydrogen bond(HB)interactions.The emphasis has been laid not only on their abilities to calculate the intermolecular hydrogen bonding energies but also on their performances in predicting the relative energies of intermolecular H-bonded complexes and the conformer stabilities due to intramolecular hydrogen bondings.As compared to the best theoretical values,we found that although PBE and PBEO gave the best estimation of HB strengths,they might fail to predict the correct order of relative HB energies,which might lead to a wrong prediction of the global minimum for different conformers.TPSS and TPSSh did not always improve over PBE and PBEO.B3LYP was found to underestimate the intermolecular HB strengths but was among the best performers in calculating the relative HB energies.We showed here that X3LYP and B97-1 were able to give good values for both absolute HB strengths and relative HB energies,making these functionals good candidates for HB description.
机译:我们已经研究了11个密度泛函,包括LDA,PBE,mPWPW91,TPSS,B3LYP,X3LYP,PBEO,03LYP,B97-1,MPW1K和TPSSh,以描述氢键(HB)相互作用的性能。与最佳理论值相比,我们不仅发现了它们计算分子间氢键能的能力,而且还预测了分子间氢键配合物的相对能以及由于分子内氢键而形成的构象异构体的稳定性。 PBE和PBEO对HB强度的最佳估计,可能无法预测相对HB能量的正确顺序,这可能导致对不同构象异构体的全局最小值的错误预测.TPSS和TPSSh并不总是比PBE和PBEO有所改善.B3LYP被发现低估了分子间HB的强度,但在计算相对HB能量方面表现最佳。我们在这里表明X3LYP和B97-1能够给出绝对HB强度和相对HB能量均具有良好的值,因此这些功能很适合描述HB。

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