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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Electronically excited states of vitamin B_(12): Benchmark calculations including time-dependent density functional theory and correlated ab initio methods
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Electronically excited states of vitamin B_(12): Benchmark calculations including time-dependent density functional theory and correlated ab initio methods

机译:维生素B_(12)的电子激发态:基准计算,包括时间依赖性密度泛函理论和相关的从头算方法

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Time-dependent density functional theory (TD-DFT) and correlated ab initio methods have been applied to explore the electronically excited states of vitamin B_(12) (cyanocobalamin or CNCbl). Different experimental techniques have been used to probe the excited states of CNCbl, revealing many issues that remain poorly understood from an electronic structure point of view. Due to its efficient scaling with size, TD-DFT emerges as one of the most practical tools that can be used to study the electronic properties of these fairly complex molecules. However, the description of excited states is strongly dependent on the type of functional used in the calculations. In the present contribution, the choice of a proper functional for vitamin B_(12) was evaluated in terms of its agreement with both experimental results and correlated ab initio calculations. Three different functionals, i.e., B3LYP, BP86, and LC-BLYP, were tested. In addition, the effect of the relative contributions of DFT and HF to the exchange-correlation functional was investigated as a function of the range-separation parameter, μ. The issues related to the underestimation of charge-transfer excitation energies by TD-DFT were validated by the Λ diagnostic, which measures the spatial overlap between occupied and virtual orbitals involved in the particular excitation. The nature of the low-lying excited states was also analyzed based on a comparison of TD-DFT and ab initio results. Based on an extensive comparison with experimental results and ab initio benchmark calculations, the BP86 functional was found to be the most appropriate in describing the electronic properties of CNCbl. Finally, an analysis of electronic transitions and reassignment of some excitations were discussed.
机译:随时间变化的密度泛函理论(TD-DFT)和相关的从头算方法已被用于探索维生素B_(12)(氰钴胺或CNCbl)的电子激发态。已经使用了不同的实验技术来探究CNCbl的激发态,从而揭示了许多从电子结构的角度仍然难以理解的问题。由于TD-DFT具有随尺寸变化的有效缩放能力,因此成为最实用的工具之一,可用于研究这些相当复杂的分子的电子性质。但是,对激发态的描述在很大程度上取决于计算中使用的功能类型。在目前的贡献中,根据维生素B_(12)与实验结果和相关的从头算的一致性,评估了维生素B_(12)的适当功能的选择。测试了三种不同的功能,即B3LYP,BP86和LC-BLYP。此外,还研究了DFT和HF对交换相关函数的相对贡献的影响,该影响是范围分离参数μ的函数。与TD-DFT低估电荷转移激发能有关的问题已通过Λ诊断来验证,该诊断可测量特定激发所涉及的占据轨道和虚拟轨道之间的空间重叠。还基于TD-DFT和从头算结果的比较分析了低洼激发态的性质。基于与实验结果的广泛比较和从头算基准计算,发现BP86功能最适合描述CNCbl的电子特性。最后,讨论了电子跃迁和某些激发的重新分配的分析。

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