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耦合簇旋光计算的基组依赖性。

Basis set dependence of coupled cluster optical rotation computations.

机构信息

Department of Chemistry, Virginia Tech, Blacksburg, Virginia 24061, United States.

出版信息

J Phys Chem A. 2011 Sep 8;115(35):10045-51. doi: 10.1021/jp204533c. Epub 2011 Aug 15.

Abstract

Specific rotations for five notoriously difficult molecules, (S)-methyloxirane, (S)-methythiirane, (S)-2-chloropropionitrile, (1S,4S)-norbornenone, and (1R,5R)-β-pinene, have been computed using coupled cluster (CC) and density functional theory (DFT). The performance of the recently developed LPol basis sets compared to the correlation-consistent sets of Dunning and co-workers has been examined at four wavelengths: 355, 436, 589, and 633 nm. We find that the LPol basis sets are an efficient choice, often outperforming the more commonly used correlation-consistent basis sets of comparable size. The smallest of the four, LPol-ds, performs nearly as well as the rest of the series and often yields results closer to the basis set limit than appreciably larger basis sets. While the performance of the LPol bases is admirable, they still do not alleviate the need for high levels of electron correlation, vibrational corrections, and the inclusion of solvent effects to accurately reproduce experimental rotations. In particular in the case of β-pinene we find that they do not produce agreement between DFT and experiment as was previously suggested.

摘要

使用耦合簇 (CC) 和密度泛函理论 (DFT),计算了五个臭名昭著的难分子(S)-甲氧环丙烷、(S)-甲硫环丙烷、(S)-2-氯丙腈、(1S,4S)-降冰片烯酮和(1R,5R)-β-蒎烯的特定旋转。在四个波长:355、436、589 和 633nm 下,研究了最近开发的 LPol 基组与 Dunning 等人的相关一致基组的性能。我们发现 LPol 基组是一种有效的选择,通常优于更常用的可比大小的相关一致基组。这四个基组中最小的 LPol-ds 表现几乎与其他基组一样好,并且通常比明显更大的基组更接近基组极限,产生更接近基组极限的结果。尽管 LPol 基组的性能令人钦佩,但它们仍然不能减轻对高水平电子相关、振动修正和包括溶剂效应以准确再现实验旋转的需求。特别是在β-蒎烯的情况下,我们发现它们没有像之前建议的那样在 DFT 和实验之间产生一致性。

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