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非共价相互作用评估和应用方法:结合密度泛函理论(DFT)修正色散校正(DFT-D3)与 Slater 型轨道(STO)基组的能量分解分析(EDA)。

The assessment and application of an approach to noncovalent interactions: the energy decomposition analysis (EDA) in combination with DFT of revised dispersion correction (DFT-D3) with Slater-type orbital (STO) basis set.

机构信息

KLGHEI of Environment and Energy Chemistry, School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

J Mol Model. 2012 Oct;18(10):4577-89. doi: 10.1007/s00894-012-1425-0. Epub 2012 May 29.

Abstract

An assessment study is presented about energy decomposition analysis (EDA) in combination with DFT including revised dispersion correction (DFT-D3) with Slater-type orbital (STO) basis set. There has been little knowledge about the performance of the EDA + DFT-D3 concerning STOs. In this assessment such an approach was applied to calculate noncovalent interaction energies and their corresponding components. Complexes in S22 set were used to evaluate the performance of EDA in conjunction with four representative types of GGA-functionals of DFT-D3 (BP86-D3, BLYP-D3, PBE-D3 and SSB-D3) with three STO basis sets ranging in complexity from DZP, TZ2P to QZ4P. The results showed that the approach of EDA + BLYP-D3/TZ2P has a better performance not only in terms of calculating noncovalent interaction energy quantitatively but also in analyzing corresponding energy components qualitatively. This approach (EDA + BLYP-D3/TZ2P) was thus applied further to two representative large-system complexes including porphine dimers and fullerene aggregates to gain a better insight into binding characteristics.

摘要

本文提出了一种关于能量分解分析(EDA)与包括修订后的色散校正(DFT-D3)与 Slater 型轨道(STO)基组相结合的密度泛函理论(DFT)的评估研究。关于 STO 对 EDA + DFT-D3 的性能的了解甚少。在这项评估中,采用了这种方法来计算非共价相互作用能及其相应的分量。S22 数据集的复合物用于评估 EDA 与四种代表性的 DFT-D3 的广义梯度近似(GGA)函数(BP86-D3、BLYP-D3、PBE-D3 和 SSB-D3)相结合的性能,其中三种 STO 基组的复杂度从 DZP、TZ2P 到 QZ4P 不等。结果表明,EDA + BLYP-D3/TZ2P 方法不仅在定量计算非共价相互作用能方面,而且在定性分析相应的能量分量方面都具有更好的性能。因此,该方法(EDA + BLYP-D3/TZ2P)进一步应用于两个代表性的大体系复合物,包括卟啉二聚体和富勒烯聚集体,以更好地了解结合特性。

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