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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Looking at Self-Consistent-Charge Density Functional Tight Binding from a Semiempirical Perspective
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Looking at Self-Consistent-Charge Density Functional Tight Binding from a Semiempirical Perspective

机译:从半经验的角度看自洽电荷密度功能紧密绑定

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The self-consistent-charge density functional tight binding (SCC-DFTB) method is compared with other semiempirical methods (MNDO, AM1, PM3, OM1, OM2, OM3). Despite the differences in the underlying philosophy and derivation, these methods share many common features. Systematic evaluations of their performance are reported for standard test sets that are in common use. The overall accuracy of SCC-DFTB and the other methods is in the same range, with the overall tendency AM1 < SCC-DFTB < OM2, but any such ranking depends on the properties and compound classes considered. SCC-DFTB is excellent for geometries and performs well for biological systems. It seems less suitable for the energetics of radicals and electronically excited states, and suffers from occasional outliers (e.g., for compounds with NO bonds). In an overall assessment, SCC-DFTB is a viable semiempirical method with specific strengths and weaknesses which may be an attractive choice especially for biomolecular applications.
机译:将自洽电荷密度功能紧密结合(SCC-DFTB)方法与其他半经验方法(MNDO,AM1,PM3,OM1,OM2,OM3)进行比较。尽管基本原理和派生方法有所不同,但这些方法具有许多共同的特征。对于常用的标准测试集,报告了其性能的系统评估。 SCC-DFTB和其他方法的总体准确性在同一范围内,总体趋势为AM1

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