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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Assessment of Different Quantum Mechanical Methods for the Prediction of Structure and Cohesive Energy of Molecular Crystals
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Assessment of Different Quantum Mechanical Methods for the Prediction of Structure and Cohesive Energy of Molecular Crystals

机译:评估分子晶体结构和内聚能的不同量子力学方法的评估

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摘要

A comparative assessment of the accuracy of different quantum mechanical methods for evaluating the structure and the cohesive energy of molecular crystals is presented. In particular, we evaluate the performance of the semiempirical HF-3c method in comparison with the B3LYP-D* and the Local MP2 (LMP2) methods by means of a fully periodic approach. Three benchmark sets have been investigated: X23, G60, and the new K7; for a total of 82 molecular crystals. The original HF-3c method performs well but shows a tendency at overbinding molecular crystals, in particular for weakly bounded systems. For the X23 set, the mean absolute error for the cohesive energies computed with the HF-3c method is comparable to the LMP2 one. A refinement of the HF-3c has been attempted by tuning the dispersion term in the HF-3c energy. While the performance on cohesive energy prediction slightly worsens, optimized unit cell volumes are in excellent agreement with experiment. Overall, the B3LYP-D* method combined with a TZP basis set gives the best results. For cost-effective calculations on molecular crystals, we propose to compute cohesive energies at the B3LYP-D*/TZP level of theory on the dispersion-scaled HF-3c optimized geometries (i.e., B3LYP-D*/TZP//HF-3c(0.27) also dubbed as SP-B3LYP-D*). Besides, for further benchmarking on molecular crystals, we propose to combine the three test sets in a new one denoted as MC82.
机译:提出了对不同量子力学方法评估分子晶体的结构和内聚能的准确性的比较评估。特别是,我们通过完全周期性的方法评估了半经验HF-3c方法与B3LYP-D *和本地MP2(LMP2)方法相比的性能。研究了三个基准套件:X23,G60和新的K7;总共有82个分子晶体。最初的HF-3c方法表现良好,但在分子晶体过度结合方面表现出趋势,特别是对于弱结合的系统。对于X23集,用HF-3c方法计算出的内聚能的平均绝对误差与LMP2相当。试图通过调整HF-3c能量中的色散项来改进HF-3c。虽然内聚能预测的性能略有下降,但优化的晶胞体积与实验非常吻合。总体而言,将B3LYP-D *方法与TZP基集结合使用可获得最佳结果。为了对分子晶体进行具有成本效益的计算,我们建议在色散缩放的HF-3c优化几何(即B3LYP-D * / TZP // HF-3c)的理论级B3LYP-D * / TZP上计算内聚能(0.27)也称为SP-B3LYP-D *)。此外,为了进一步对分子晶体进行基准测试,我们建议将这三个测试集合并为一个新的MC82。

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