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Optical rotation calculations on large molecules using the approximate coupled cluster model CC2 and the resolution-of-the-identity approximation

机译:使用近似耦合簇模型CC2和恒等分辨率近似对大分子进行旋光计算

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摘要

We investigate the performance of the approximate coupled cluster singles-and doubles model CC2 in the prediction of optical rotations of organic molecules. For this purpose we employ a combination of two test sets from the literature which include small and medium-sized rigid organic molecules and a series of helicenes. CC2 calculations on molecules as large as 11-helicene became possible through a recent implementation of frequency-dependent second-order properties for CC2 which makes use of the resolution-of-the-identity approximation for the electron repulsion integrals. The results are assessed with respect to the accuracy of the absolute values of the optical rotation and the prediction of the correct sign, which is crucial for the determination of absolute configurations. The performance of CC2 is compared with that of density functional theory at the B3LYP and CAM-B3LYP levels. Furthermore we investigated the influence of the molecular geometry and the one-electron basis set and tested to which extent spin-component scaling changes the results.
机译:我们研究了近似耦合簇单双模型CC2在预测有机分子旋光性方面的性能。为此,我们采用了文献中两个测试套件的组合,其中包括中小型刚性有机分子和一系列螺旋。通过最近实现的CC2频率相关的二阶特性,利用电子排斥积分的分辨度近似,可以对大至11-螺旋的分子进行CC2计算。根据旋光度的绝对值的准确性和正确符号的预测对结果进行评估,这对于确定绝对配置至关重要。将CC2的性能与密度泛函理论在B3LYP和CAM-B3LYP水平上的性能进行比较。此外,我们研究了分子几何形状和单电子基集的影响,并测试了自旋组分定标改变结果的程度。

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