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The Good, the Bad, and the Ugly: Pseudopotential Inconsistency Errors in Molecular Applications of Density Functional Theory

赝势 密度泛函理论 计算机科学 理论物理学 物理 统计物理学 量子力学
作者
Elliot Rossomme,Leonardo A. Cunha,Wan‐Lu Li,Kaixuan Chen,Alexandra R. McIsaac,Teresa Head‐Gordon,Martin Head‐Gordon
出处
期刊:Journal of Chemical Theory and Computation [American Chemical Society]
卷期号:19 (10): 2827-2841 被引量:12
标识
DOI:10.1021/acs.jctc.3c00089
摘要

The pseudopotential (PP) approximation is one of the most common techniques in computational chemistry. Despite its long history, the development of custom PPs has not tracked with the explosion of different density functional approximations (DFAs). As a result, the use of PPs with exchange/correlation models for which they were not developed is widespread, although this practice is known to be theoretically unsound. The extent of PP inconsistency errors (PPIEs) associated with this practice has not been systematically explored across the types of energy differences commonly evaluated in chemical applications. We evaluate PPIEs for a number of PPs and DFAs across 196 chemically relevant systems of both transition-metal and main-group elements, as represented by the W4-11, TMC34, and S22 data sets. Near the complete basis set limit, these PPs are found to cleanly approach all-electron (AE) results for noncovalent interactions but introduce root-mean-squared errors (RMSEs) upwards of 15 kcal mol –1 into predictions of covalent bond energies for a number of popular DFAs. We achieve significant improvements through the use of empirical atom- and DFA-specific PP corrections, indicating considerable systematicity of the PPIEs. The results of this work have implications for chemical modeling in both molecular contexts and for DFA design, which we discuss.
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