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Effect of the self-interaction error for three-electron bonds:On the development of new exchange-correlation functionals

机译:三电子键的自相互作用误差的影响:对新的交换相关功能的发展

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The dissociation behavior as well as the equilibrium properties of radical cations with three-electron bonds,namely He_2~(+·),N_2H_6~(+·),O_2H_4~(+·),F_2H_2~(+·),and Ne_2~(+·) are investigated using standard and self-interaction-corrected density functional theory (SIC-DFT) in connection with a variety of pure and hybrid exchange-correlation (XC) functionals.The impact of the self-interaction error (SIE) on the results of standard DFT is analyzed considering the individual orbital contributions to the SIE,the dependence of the SIE on the separation distance between the dissociation fragments,and its impact on the equilibrium properties of 2-6.A local analysis of the SIE in terms of exact and DFT exchange holes reveals that the SIE mimics not only non-dynamic but also an increasing amount of dynamic electron correlation effects as the number of valence electrons is enlarged.Standard DFT describes the dissociation of three-electron bonds qualitatively incorrectly.This can be traced back in the first instance to the SIE of the bonding p electron,which mimics a spurious long-range correlation with a non-existing delocalized a electron in the same bond.A comparison of the covalent (symmetric) and ionic (symmetry-broken) state of radical cations 2-6 at large interaction distances provides further insight in the inconsistencies of the DFT description:(i) Not only the SIE but also the approximate description of the interelectronic exchange contributes to the incorrect description of the dissociation,(ii) Dissociating three-electron bonds show a specific form of long-range correlation effects,which is neither accounted for by standard DFT,SIC-DFT nor Hartree-Fock theory.Indeed,SIC-DFT provides a qualitatively better description of the dissociation of radical cations,however in general a poor performance when describing equilibrium properties.There is no need for SIC-DFT methods.Instead,there is need for XC functionals with exact exchange and long-range correlation effects (e.g.mimicked by the exchange SIE) absorbed in the correlation functional.Implications of our findings for the construction of new density functionals are discussed.
机译:具有三电子键的自由基阳离子He_2〜(+·),N_2H_6〜(+·),O_2H_4〜(+·),F_2H_2〜(+·)和Ne_2〜的离解行为及平衡性质(+·)是使用标准的和自交互校正的密度泛函理论(SIC-DFT)与各种纯混合混合交换相关(XC)泛函进行研究的。自交互误差(SIE)的影响根据标准DFT的结果,考虑了单个轨道对SIE的贡献,SIE对解离碎片之间的分离距离的依赖性及其对2-6平衡性质的影响的分析。确切的和DFT交换孔的术语表明,随着价电子数量的增加,SIE不仅模拟了非动态的,而且还模拟了动态电子相关性的增加。标准DFT错误地定性描述了三电子键的解离。可以追溯首先是键合p电子的SIE,它模拟了与相同键中不存在的离域电子不存在的虚假远程关联。共价(对称)和离子(对称断裂)状态的比较大相互作用距离处的自由基阳离子2-6的描述为DFT描述的不一致之处提供了进一步的见解:(i)不仅是SIE,而且电子间交换的近似描述也导致了对离解的错误描述,(ii)离解三电子键显示了一种特定形式的远距离相关效应,这既不能通过标准DFT,SIC-DFT也不能通过Hartree-Fock理论来解释。实际上,SIC-DFT从质上更好地描述了自由基阳离子的解离,但是,通常在描述平衡特性时性能较差。不需要SIC-DFT方法。相反,需要具有精确交换和长程相关效应的XC功能(例如(例如被交换SIE模拟)吸收到相关的泛函中。讨论了我们的发现对构建新的密度泛函的意义。

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