Calculation of the Binding Energies of Different Types of Hydrogen Bonds Using GGA Density Functional and Its Long-Range, Empirical Dispersion Correction Methods

被引:21
|
作者
Sun Tao
Wang Yi-Bo [1 ]
机构
[1] Key Lab Guizhou High Performance Computat Chem, Guiyang 550025, Peoples R China
基金
中国国家自然科学基金;
关键词
Density functional theory; Hydrogen bond; Intermolecular interaction; Basis set; Basis set superposition error; GAUSSIAN-BASIS SETS; CORRELATED MOLECULAR CALCULATIONS; PLESSET PERTURBATION-THEORY; DER-WAALS COMPLEXES; THERMOCHEMICAL KINETICS; NONCOVALENT INTERACTIONS; ACCURATE; ATOMS; SPIN; PERFORMANCE;
D O I
10.3866/PKU.WHXB20111017
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We investigated eleven exchange-correlation energy density functionals including generalized gradient approximation (GGA) (PBE, PW91), meta-GGA (M06-L), hyper-GGA (M06-2X, B3LYP, X3LYP), LC-DFT methods (CAM-B3LYP, LC-omega PBE, omega B97X), and density functional theory with dispersion corrections (DFT-D) methods (omega B97X-D, B97-D) for their performance in describing systems with conventional and non-conventional hydrogen bonds. After comparing the results using the benchmark CCSD(T)/aug-cc-pVQZ approach we found that the M06-2X and wB97X-D functionals provided the most accurate and reliable results for the fifteen systems studied in this work with strong, moderate, and weak hydrogen bonds. It is important to employ an appropriate basis set to predict the binding energy of hydrogen bonds for all DFT methods and we found that the basis set of 6-311++G(2d, 2p) or aug-cc-pVDZ is adequate. The effect of the basis set superposition error (BSSE) is relatively small for the DFT methods tested. All the methods except for omega B97X and omega B97X-D were found to produce equally accurate or even more accurate results without BSSE correction.
引用
收藏
页码:2553 / 2558
页数:6
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