Department of Chemistry, Yonsei University, 50 Yonsei-ro Seodaemun-gu, Seoul, 03722, Korea.
Institute for Microelectronics and Microsystems (CNR-IMM), Via Monteroni, Campus Unisalento, Lecce, 73100, Italy.
J Chem Theory Comput. 2022 Feb 8;18(2):817-827. doi: 10.1021/acs.jctc.1c01045. Epub 2022 Jan 20.
HF-DFT, the practice of evaluating approximate density functionals on Hartree-Fock densities, has long been used in testing density functional approximations. Density-corrected DFT (DC-DFT) is a general theoretical framework for identifying failures of density functional approximations by separating errors in a functional from errors in its self-consistent (SC) density. Most modern DFT calculations yield highly accurate densities, but important characteristic classes of calculation have large density-driven errors, including reaction barrier heights, electron affinities, radicals and anions in solution, dissociation of heterodimers, and even some torsional barriers. Here, the HF density (if not spin-contaminated) usually yields more accurate and consistent energies than those of the SC density. We use the term DC(HF)-DFT to indicate DC-DFT using HF densities only in such cases. A recent comprehensive study (. , , 1368-1379) of HF-DFT led to many unfavorable conclusions. A reanalysis using DC-DFT shows that DC(HF)-DFT substantially improves DFT results precisely when SC densities are flawed.
HF-DFT,即在 Hartree-Fock 密度上评估近似密度泛函的实践,长期以来一直用于测试密度泛函近似。密度校正的密度泛函(DC-DFT)是一种通过将泛函中的误差与自洽(SC)密度中的误差分离来识别密度泛函近似失效的通用理论框架。大多数现代密度泛函计算都能得到高度精确的密度,但重要的计算特征类存在很大的密度驱动误差,包括反应势垒高度、电子亲和能、溶液中的自由基和阴离子、杂二聚体的解离,甚至一些扭转势垒。在这里,HF 密度(如果没有自旋污染)通常比 SC 密度产生更准确和一致的能量。在这种情况下,我们使用术语 DC(HF)-DFT 来表示仅使用 HF 密度的 DC-DFT。最近对 HF-DFT 的一项综合研究(,., 1368-1379)得出了许多不利的结论。使用 DC-DFT 的重新分析表明,当 SC 密度存在缺陷时,DC(HF)-DFT 确实可以大大改善 DFT 结果。