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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Cluster-in-Molecule Local Correlation Method with an Accurate Distant Pair Correction for Large Systems
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Cluster-in-Molecule Local Correlation Method with an Accurate Distant Pair Correction for Large Systems

机译:用于大型系统的精确远处对校正的聚类局部相关方法

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摘要

The cluster-in-molecule (CIM) local correlation approach with an accurate distant pair correlation energy correction is presented. For large systems, the inclusion of distant pair correlation energies is essential for the accurate prediction of absolute correlation energies and relative energies. Here, we propose a simple and efficient scheme for evaluating the distant pair correlation energy correction for the CIM approaches. The corrections can be readily extracted from electron correlation calculations of clusters with almost no additional effort. Benchmark calculations show that the improved CIM approach can recover more than 99.94% of the correlation energy calculated by the parent method. By combining the CIM approach with the domain-based local pair natural orbital (DLPNO) local correlation approach, we have provided accurate binding energies at the CIM-DLPNO-CCSD(T) level for a test set consisting of eight weakly bound complexes ranging in size from 200 to 1027 atoms. With these results as the reference data, the accuracy and applicability of other electron correlation methods and a few density functional methods for large systems have been assessed.
机译:提出了一种具有精确距离对关联能量校正的分子簇局部关联方法。对于大型系统,包含远距离对关联能对于准确预测绝对关联能和相对关联能至关重要。在这里,我们提出了一个简单而有效的方案来评估CIM方法的距离对相关能量校正。几乎不需要额外的努力,就可以很容易地从团簇的电子关联计算中提取修正。基准计算表明,改进的CIM方法可以恢复父方法计算的相关能量的99.94%以上。通过将CIM方法与基于域的局部对自然轨道(DLPNO)局部关联方法相结合,我们在CIM-DLPNO-CCSD(T)水平上为一个测试集提供了精确的结合能,该测试集由八个大小从200到1027个原子的弱束缚络合物组成。以这些结果为参考数据,评估了其他电子相关方法和几种密度泛函方法在大型系统中的准确性和适用性。

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  • 作者单位

    School of Chemistry and Chemical Engineering Key Laboratory of Mesoscopic Chemistry of Ministry of Education Institute of Theoretical and Computational Chemistry Nanjing University;

    Qingdao Institute for Theoretical and Computational Sciences Shandong University;

    Max Planck Institut für Kohlenforschung Kaiser-Wilhelm Platz;

    School of Chemistry and Chemical Engineering Key Laboratory of Mesoscopic Chemistry of Ministry of Education Institute of Theoretical and Computational Chemistry Nanjing University;

    School of Chemistry and Chemical Engineering Key Laboratory of Mesoscopic Chemistry of Ministry of Education Institute of Theoretical and Computational Chemistry Nanjing University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学键的量子力学理论;化学;
  • 关键词

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