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采用长程色散校正构建的半经验广义梯度近似(GGA)型密度泛函。

Semiempirical GGA-type density functional constructed with a long-range dispersion correction.

作者信息

Grimme Stefan

机构信息

Theoretische Organische Chemie, Organisch-Chemisches Institut der Universität Münster, Corrensstrasse 40, D-48149 Münster, Germany.

出版信息

J Comput Chem. 2006 Nov 30;27(15):1787-99. doi: 10.1002/jcc.20495.

Abstract

A new density functional (DF) of the generalized gradient approximation (GGA) type for general chemistry applications termed B97-D is proposed. It is based on Becke's power-series ansatz from 1997 and is explicitly parameterized by including damped atom-pairwise dispersion corrections of the form C(6) x R(-6). A general computational scheme for the parameters used in this correction has been established and parameters for elements up to xenon and a scaling factor for the dispersion part for several common density functionals (BLYP, PBE, TPSS, B3LYP) are reported. The new functional is tested in comparison with other GGAs and the B3LYP hybrid functional on standard thermochemical benchmark sets, for 40 noncovalently bound complexes, including large stacked aromatic molecules and group II element clusters, and for the computation of molecular geometries. Further cross-validation tests were performed for organometallic reactions and other difficult problems for standard functionals. In summary, it is found that B97-D belongs to one of the most accurate general purpose GGAs, reaching, for example for the G97/2 set of heat of formations, a mean absolute deviation of only 3.8 kcal mol(-1). The performance for noncovalently bound systems including many pure van der Waals complexes is exceptionally good, reaching on the average CCSD(T) accuracy. The basic strategy in the development to restrict the density functional description to shorter electron correlation lengths scales and to describe situations with medium to large interatomic distances by damped C(6) x R(-6) terms seems to be very successful, as demonstrated for some notoriously difficult reactions. As an example, for the isomerization of larger branched to linear alkanes, B97-D is the only DF available that yields the right sign for the energy difference. From a practical point of view, the new functional seems to be quite robust and it is thus suggested as an efficient and accurate quantum chemical method for large systems where dispersion forces are of general importance.

摘要

提出了一种用于一般化学应用的广义梯度近似(GGA)类型的新密度泛函(DF),称为B97-D。它基于1997年Becke的幂级数假设,并通过包含形式为C(6)×R(-6)的阻尼原子对色散校正进行显式参数化。已经建立了此校正中使用参数的通用计算方案,并报告了直至氙元素的参数以及几种常见密度泛函(BLYP、PBE、TPSS、B3LYP)色散部分的缩放因子。在标准热化学基准集、40个非共价结合复合物(包括大型堆积芳香分子和II族元素簇)以及分子几何结构计算方面,将新泛函与其他GGA和B3LYP杂化泛函进行了比较测试。还对有机金属反应和标准泛函的其他难题进行了进一步的交叉验证测试。总之,发现B97-D属于最精确的通用GGA之一,例如对于G97/2生成热集,平均绝对偏差仅为3.8 kcal mol(-1)。包括许多纯范德华复合物在内的非共价结合体系的性能非常好,平均达到CCSD(T)精度。开发过程中的基本策略是将密度泛函描述限制在较短的电子相关长度尺度,并通过阻尼C(6)×R(-6)项描述中等至大原子间距离的情况,这似乎非常成功,一些 notoriously difficult反应就证明了这一点。例如,对于较大支链烷烃到线性烷烃的异构化,B97-D是唯一能给出正确能量差符号的DF。从实际角度来看,新泛函似乎相当稳健,因此建议将其作为一种高效且准确的量子化学方法用于色散力普遍重要的大型体系。

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