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The d-electrons of Fe in ferrocene: the excess orbital energy spectrum (EOES)

机译:二茂铁中铁的d电子:过量轨道能谱(EOES)

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The d-electrons of transition metal Fe play a significant role in characterising properties of the ferrocene (Fc) eclipsed (E) and staggered (S) conformers and their chemical bonding, which must be appropriately included in the basis set for Fe, in addition to the level of theory. The present density functional theory (DFT) based B3LYP/m6-31G(d) model has successfully calculated accurate infrared (IR) spectra of ferrocene without scaling (Mohammadi et al., 2012). The present study introduces an excess orbital energy spectrum (EOES) in order to assess more detailed orbital based information of ferrocene between the conformers, which is contained in this model. It is revealed that the d-electrons of Fe show significantly larger electron correlation energies than other electrons of Fc, which contain the key information for the conformers, and not all the d-electrons of Fe play the same role in the conformer pair of Fc. Inclusion of electron correlation energy in the model, theory as well as the basis set, therefore, becomes critically important to produce reliable and useful results for Fc. It further reveals that the Fe-dominant orbitals, i.e., 4a(1)' (i.e. MO 16), 3e(1)' (MO 18-19), 3e(2)', 3e(2)'' (MO 37-40) and 4e(2)' (HOMO, i.e., MO 47-48), which are all dominated by d-electron contributions from Fe, exhibit excess orbital energies larger than their total electronic energy difference between the conformers. Finally, the present study suggests that the covalent bonding character exists in the Fe-Cp bonds of Fc, which may help explain the reason of high thermal stabilities of Fc.
机译:过渡金属Fe的d电子在表征蚀变的(E)和交错的(S)的二茂铁(Fc)的性质及其化学键方面起重要作用,此外,还必须适当地将其包括在Fe的基础体系中达到理论水平。当前基于密度泛函理论(DFT)的B3LYP / m6-31G(d)模型已成功计算出二茂铁的准确红外(IR)光谱,而无需缩放(Mohammadi et al。,2012)。本研究引入了过量轨道能谱(EOES),以便评估该模型中包含的二茂铁之间基于二茂铁的更详细的基于轨道的信息。结果表明,Fe的d电子显示出比Fc的其他电子大得多的电子相关能,后者包含构象体的关键信息,并且并非Fe的所有d电子在Fc的构象对中都起相同的作用。 。因此,将电子相关能量包括在模型,理论和基础集中对于生成Fc可靠且有用的结果至关重要。它进一步揭示了Fe占优势的轨道,即4a(1)'(即MO 16),3e(1)'(MO 18-19),3e(2)',3e(2)''(MO 37 -40)和4e(2)'(HOMO,即MO 47-48)都由Fe的d电子贡献所支配,它们的剩余轨道能量大于其构象子之间的总电子能差。最后,本研究表明Fc的Fe-Cp键中存在共价键特征,这可能有助于解释Fc高热稳定性的原因。

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