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Assessing the ability of DFT methods to describe static electron correlation effects: CO core level binding energies as a representative case

机译:评估DFT方法描述静态电子相关效果的能力:将核心水平绑定能量作为代表性案例

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We use a total energy difference approach to explore the ability of various density functional theory based methods in accounting for the differential effect of static electron correlation on the C(1s) and O(1s) core level binding energies (BEs) of the CO molecule. In particular, we focus on the magnitude of the errors of the computed C(1s) and O(1s) BEs and on their relative difference as compared to experiment and to previous results from explicitly correlated wave functions. Results show that the different exchange-correlation functionals studied here behave rather erratically and a considerable number of them lead to large errors in the BEs and/or the BE shifts. Nevertheless, the TPSS functional, its TPSSm and RevTPSS derivations, and its corresponding hybrid counterpart, TPSSh, perform better than average and provide BEs and BE shifts in good agreement with experiment. Published by AIP Publishing.
机译:我们使用总能量差异方法来探讨各种密度泛函理论基于CO分子C(1S)核心水平结合能量(BES)的静态电子相关性的差异效果的能力 。 特别是,与实验相比,我们专注于计算的C(1S)和O(1S)和O(1S)BES的误差和其相对差异的大小,并且与明确相关波函数的先前结果相比。 结果表明,这里研究的不同的交换相关功能表现得相当不规律,并且相当数量的它们导致BES和/或移位中的大错误。 然而,TPSS功能,其TPSSM和REVTPSS衍生物及其相应的混合对手TPSSH比平均水平更好,并与实验一致地提供BES。 通过AIP发布发布。

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