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水溶液中3d过渡金属-水配合物(Ti-Cu)的光电子能谱和密度泛函理论计算

Photoemission spectra and density functional theory calculations of 3d transition metal-aqua complexes (Ti-Cu) in aqueous solution.

作者信息

Yepes Diana, Seidel Robert, Winter Bernd, Blumberger Jochen, Jaque Pablo

机构信息

Departamento de Ciencias Químicas, Facultad de Ciencias Exactas, Universidad Andres Bello , Avenida Republica 275, Santiago 8370146, Chile.

出版信息

J Phys Chem B. 2014 Jun 19;118(24):6850-63. doi: 10.1021/jp5012389. Epub 2014 Jun 5.

DOI:10.1021/jp5012389
PMID:24902000
Abstract

Photoelectron spectroscopy measurements and density functional calculations are combined to determine the lowest electron binding energies of first-row transition-metal aqua ions, titanium through copper, with 3d(1) through 3d(9) electronic configurations, in their most common oxidation states. Vertical ionization energies are found to oscillate considerably between 6.76 and 9.65 eV for the dications and between 7.05 and 10.28 eV for the respective trivalent cations. The metal cations are modeled as M(H2O)n clusters (q = 2, 3, and 4; n = 6 and 18) surrounded by continuum solvent. The performance of 10 exchange-correlation functionals, two GGAs, three MGGAs, two HGGAs and three HMGGAs, combined with the MDF10(ECP)/6-31+G(d,p) basis set is assessed for 11 M-O bond distances, 10 vertical ionization energies, 6 adiabatic ionization energies, and the associated reorganization free energies. We find that for divalent cations the HGGA and HMGGA functionals in combination with the 18 water model show the best agreement with experimental vertical ionization energies and geometries; for trivalent ions, the MGGA functionals perform best. The corresponding reorganization free energies (λo) of the oxidized ions are significantly underestimated with all DFT functionals and cluster models. This indicates that the structural reorganization of the solvation shell upon ionization is not adequately accounted for by the simple solvation models used, emphasizing the importance of extended sampling of thermally accessible solvation structures for an accurate computation of this quantity. The photoelectron spectroscopy measurements reported herein provide a comprehensive set of transition-metal redox energetic quantities for future electronic structure benchmarks.

摘要

结合光电子能谱测量和密度泛函计算,以确定第一行过渡金属水合离子(从钛到铜,具有3d(1)至3d(9)电子构型)在其最常见氧化态下的最低电子结合能。发现二价阳离子的垂直电离能在6.76至9.65 eV之间大幅振荡,相应的三价阳离子的垂直电离能在7.05至10.28 eV之间振荡。金属阳离子被建模为被连续溶剂包围的M(H2O)n簇(q = 2、3和4;n = 6和18)。针对11个M - O键距离、10个垂直电离能、6个绝热电离能以及相关的重组自由能,评估了10种交换相关泛函(2种广义梯度近似(GGA)、3种meta - GGA(MGGAs)、2种杂化GGA(HGGAs)和3种杂化meta - GGA(HMGGAs))与MDF10(ECP)/6 - 31+G(d,p)基组的性能。我们发现,对于二价阳离子,HGGA和HMGGA泛函与18水模型相结合,与实验垂直电离能和几何结构显示出最佳一致性;对于三价离子,MGGA泛函表现最佳。所有密度泛函和簇模型都显著低估了氧化离子相应的重组自由能(λo)。这表明,所用的简单溶剂化模型没有充分考虑电离时溶剂化壳层的结构重组,强调了对热可及溶剂化结构进行扩展采样以准确计算该量的重要性。本文报道的光电子能谱测量为未来的电子结构基准提供了一套全面的过渡金属氧化还原能量学量。

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