首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Revisiting the calculation of C-13 chemical shift tensors in cadmium acetate dihydrate with EIM and EIM/cluster methods
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Revisiting the calculation of C-13 chemical shift tensors in cadmium acetate dihydrate with EIM and EIM/cluster methods

机译:回顾EIM和EIM / Cluster方法计算二水合乙酸镉中C-13化学位移张量

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摘要

The chemical shift tensors of the acetate anions in cadmium acetate dihydrate are calculated using a cluster approach, the embedded ion method (EIM), and a combination of the two in the EIM/cluster method. The results of these calculations are compared with those completed on the isolated acetate anion and show the need for the inclusion of intermolecular interactions. The RMS difference between experiment and theory improves from over 60 ppm when the calculation is completed on an isolated anion, to below 10 ppm when interactions to nearby atoms are included. The best cluster model includes three cadmium acetate dihydrate and gives an RMS result of 4.4 ppm. The EIM method, which uses point charges to account for the intermolecular effects, achieves an RMS of 7.7 ppm on individual anions alone. A combination of the two, the EIM/cluster method, shows that the only necessary atom to explicitly add is the nearest cadmium; this addition results in an RMS of 4.1 ppm. These results are also discussed in terms of the computational cost of the different calculations. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:使用簇方法,嵌入离子方法(EIM)以及EIM /簇方法中两者的组合来计算二水合乙酸镉中乙酸根阴离子的化学位移张量。将这些计算的结果与在分离的乙酸根阴离子上完成的结果进行比较,表明需要包含分子间相互作用。实验和理论之间的RMS差异从对孤立的阴离子完成计算时的60 ppm以上提高到包括附近原子的相互作用时的10 ppm以下。最佳群集模型包括三种二水合乙酸镉,RMS结果为4.4 ppm。 EIM方法使用点电荷解释分子间效应,仅单个阴离子的RMS即可达到7.7 ppm。 EIM /簇方法将两者结合在一起,可以显示出唯一需要显式添加的原子是最近的镉。这种添加导致RMS为4.1 ppm。还根据不同计算的计算成本来讨论这些结果。版权所有(c)2006 John Wiley&Sons,Ltd.

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