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多参考态从头计算波函数方法在 X 射线吸收边缘的比较:以 [Fe(II/III)Cl] 分子为例。

Comparison of multireference ab initio wavefunction methodologies for X-ray absorption edges: A case study on [Fe(II/III)Cl] molecules.

机构信息

Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470 Mülheim an der Ruhr, Germany.

Max-Planck Institute for Chemical Energy Conversion, Stiftstrasse 34-36, D-45470 Mülheim an der Ruhr, Germany.

出版信息

J Chem Phys. 2019 Mar 14;150(10):104106. doi: 10.1063/1.5051613.

Abstract

In this work, we present a detailed comparison of wavefunction-based multireference (MR) techniques for the prediction of transition metal L-edge X-ray absorption spectroscopy (XAS) using [Fe(II)Cl] and [Fe(III)Cl] complexes as prototypical test cases. We focus on the comparison of MR Configuration Interaction (MRCI) and MR Equation of Motion Coupled Cluster (MREOM-CC) methods, which are employed to calculate valence excitation as well as core to valence Fe L-edge XAS spectra of [Fe(II)Cl] and [Fe(III)Cl] complexes. The two investigated approaches are thoroughly analyzed with respect to their information content regarding (1) metal-ligand covalency, (2) ligand field splittings, (3) relativistic effects, (4) electron correlation, (5) energy distribution, and (6) intensity modulation of the experimentally observed spectral features. It is shown that at the level of MRCI calculations in both [Fe(II)Cl] and [Fe(III)Cl] cases, very good agreement with the experimental Fe L-edge XAS spectra is obtained provided that the employed active space is extended to include ligand-based orbitals in addition to metal-based molecular orbitals. It is shown that this is necessary in order to correctly describe the important σ- and π- Fe-Cl covalent interactions. By contrast, MREOM-CC calculations yield excellent agreement relative to experiment even with small active spaces. The efficiency of the employed MR computational protocols is thoroughly discussed. Overall, we believe that this study serves as an important reference for future developments and applications of MR methods in the field of X-Ray spectroscopy.

摘要

在这项工作中,我们详细比较了基于波函数的多参考(MR)技术,以预测过渡金属 L 边 X 射线吸收光谱(XAS),使用 [Fe(II)Cl] 和 [Fe(III)Cl] 配合物作为典型的测试案例。我们专注于 MR 组态相互作用(MRCI)和 MR 运动方程耦合簇(MREOM-CC)方法的比较,这些方法用于计算价激发以及 [Fe(II)Cl] 和 [Fe(III)Cl] 配合物的核心到价 Fe L 边 XAS 光谱。这两种方法从以下方面进行了彻底的分析:(1)金属-配体共价性;(2)配体场分裂;(3)相对论效应;(4)电子相关;(5)实验观察到的光谱特征的能量分布和强度调制。结果表明,在 [Fe(II)Cl] 和 [Fe(III)Cl] 两种情况下的 MRCI 计算水平上,只要所采用的活动空间扩展到包括配体基轨道而不仅仅是金属基分子轨道,就可以得到与实验 Fe L 边 XAS 光谱非常吻合的结果。结果表明,这对于正确描述重要的 σ-和 π- Fe-Cl 共价相互作用是必要的。相比之下,即使使用较小的活动空间,MREOM-CC 计算也能与实验结果非常吻合。所采用的 MR 计算协议的效率也进行了彻底的讨论。总体而言,我们相信这项研究为未来 X 射线光谱学领域的 MR 方法的发展和应用提供了重要的参考。

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