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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Hybrid Meta Density Functional Theory Methods for Thermochemistry,Thermochemical Kinetics,and Noncovalent Interactions: The MPW1B95 and MPWB1K Models and Comparative Assessments for Hydrogen Bonding and van der Waals Interactions
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Hybrid Meta Density Functional Theory Methods for Thermochemistry,Thermochemical Kinetics,and Noncovalent Interactions: The MPW1B95 and MPWB1K Models and Comparative Assessments for Hydrogen Bonding and van der Waals Interactions

机译:热化学,热化学动力学和非共价相互作用的混合元密度泛函理论方法:MPW1B95和MPWB1K模型以及氢键和范德华相互作用的比较评估

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Based on the modified Perdew and Wang exchange functional(MPW)and Becke's 1995 correlation functional(B95),we developed two hybrid meta density functional theory(HMDFT)methods,namely MPW1B95 and MPWB1K.In addition,based on the new X functional of Xin and Goddard,again combined with B95 correlation functional,we developed two other new HMDFT methods,X1B95 and XB1K.MPW1B95 and X1B95 were optimized against a representative database of six atomization energies(AE6).MPWB1K and XB1K were optimized against a kinetics database of three forward barrier heights,three reverse barrier heights,and three energies of reaction for the reactions in the BH6 representative barrier height database.We compared the newly developed methods to other HMDFT and hybrid DFT methods for atomization energies,ionization potentials,electron affinities,barrier heights,saddle point geometries,hydrogen bonding,and weak van der Waals weak interactions.In addition,we optimized scaling factors for calculating zero-point energies from vibrational frequencies.The results show that the MPWB1K and XB1K methods give good results for thermochemistry,thermochemical kinetics,hydrogen bonding,and weak interactions,and they give excellent saddle point geometries.MPW1B95 and X1B95 are suitable for general applications in thermochemistry,and they give good performance for hydrogen bonding and weak interaction calculations.
机译:基于改进的Perdew和Wang交换函数(MPW)以及Becke 1995年的相关函数(B95),我们开发了两种混合的元密度泛函理论(HMDFT)方法,即MPW1B95和MPWB1K。和Goddard再次结合B95相关函数,我们开发了另外两种新的HMDFT方法X1B95和XB1K。针对六个原子化能量(AE6)的代表性数据库对MPW1B95和X1B95进行了优化。针对三个动力学数据库对MPWB1K和XB1K进行了优化。正向势垒高度,三个反向势垒高度以及BH6代表性势垒高度数据库中反应的三个反应能量。我们将新开发的方法与其他HMDFT和混合DFT方法比较了雾化能量,电离势,电子亲和力,势垒高度,鞍点几何形状,氢键和弱范德华弱相互作用。此外,我们优化了比例因子以计算零点en结果表明,MPWB1K和XB1K方法在热化学,热化学动力学,氢键和弱相互作用方面均取得了良好的结果,并且它们具有出色的鞍点几何形状。MPW1B95和X1B95适用于热化学的一般应用,并且它们具有良好的氢键键合和弱相互作用计算性能。

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