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首页> 外文期刊>Journal of physical chemistry letters >Practical Density Functionals beyond the Overdelocalization-Underbinding Zero-Sum Game
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Practical Density Functionals beyond the Overdelocalization-Underbinding Zero-Sum Game

机译:超越覆盖耗制性零和游戏超越的实用密度功能

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摘要

Density functional theory (DFT) uses a density functional approximation (DFA) to add electron correlation to mean-field electronic structure calculations. Standard strategies (generalized gradient approximations GGAs, meta-GGAs, hybrids, etc.) for building DFAs, no matter whether based on exact constraints or empirical parametrization, all face a zero-sum game between overdelocalization (fractional charge error, FC) and underestimation of covalent bonding (fractional spin error, FS). This work presents an alternative strategy. Practical "Rung 3.5" ingredients are used to implement insights from hyper-GGA DFAs that reduce both FS and FC errors. Prototypes of this strategy qualitatively improve FS and FC error over 40 years of standard DFAs while maintaining low cost and practical evaluation of properties. Numerical results ranging from transition metal thermochemistry to absorbance peaks and excited-state geometry optimizations highlight this strategy's promise and indicate areas requiring further development.
机译:密度泛函理论(DFT)使用密度函数近似(DFA)来将电子相关性与均值的电子结构计算添加。无论是基于精确的约束还是经验参数化,所有面临过度调整(分数充电误差,FC)之间的零和游戏,标准策略共价键合(分数旋转误差,FS)。这项工作提出了另一种策略。实用的“梯度3.5”成分用于实现从Hyper-GGA DFAS减少FS和FC误差的洞察力。该策略的原型在40多年的标准DFA中定性地改善了FS和FC误差,同时保持了低成本和实际评估的性能。从过渡金属热化学吸光峰和兴奋状态几何优化的数值结果强调了该策略的承诺,并表明需要进一步发展的领域。

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