Department of Chemistry Modeling and Informatics, Merck Research Laboratories, West Point, Pennsylvania 19486, USA.
J Phys Chem A. 2010 Sep 2;114(34):9205-11. doi: 10.1021/jp912094q.
It is generally accepted that large basis sets are required for the accurate calculation of interaction energies for weakly bound aryl dimers, but it has recently been reported that MP2(full)/6-31G* energies, although inaccurate in absolute terms, are well-correlated with estimated CCSD(T)/CBS results. It is now shown that this correlation holds for MP2/aug-cc-pVDZ and SCS-MP2/aug-cc-pVDZ values. Linear regression of published CCSD(T)/CBS results with MP2 or SCS-MP2 results has been used to correct systematic errors observed with both MP2 theories, and these corrections are applied to 27 parallel-displaced aromatic dimers of interest in medicinal chemistry. The optimal computed interaction energies are found to be strongly correlated with the heavy atom counts of the aryl/aryl dimers. This relationship between heavy atom count and interaction energy also applies to a series of 12 aryl/non-aryl dimers such that a single linear regression equation accounts for all of the dimers studied.
人们普遍认为,对于弱束缚芳基二聚体的相互作用能的精确计算需要大的基组,但最近有报道称,尽管 MP2(full)/6-31G* 能量在绝对值上不准确,但与估计的 CCSD(T)/CBS 结果很好相关。现在表明,这种相关性适用于 MP2/aug-cc-pVDZ 和 SCS-MP2/aug-cc-pVDZ 值。已经使用与 MP2 或 SCS-MP2 结果的已发表 CCSD(T)/CBS 结果的线性回归来校正两种 MP2 理论中观察到的系统误差,并且这些校正适用于在药物化学中感兴趣的 27 个平行位移的芳基二聚体。发现最佳计算的相互作用能与芳基/芳基二聚体的重原子数强烈相关。这种重原子数与相互作用能之间的关系也适用于一系列 12 个芳基/非芳基二聚体,使得单个线性回归方程可以涵盖所有研究的二聚体。