Boydas Esma Birsen, Roemelt Michael
Institut für Chemie, Humboldt-Universität zu Berlin, Brook-Taylor-Str. 2, D-12489 Berlin, Germany.
Phys Chem Chem Phys. 2024 Jul 31;26(30):20376-20387. doi: 10.1039/d4cp01900h.
This study explores the electronic structure of Co, Fe and Mn phthalocyanines (TMPcs) as well as their perfluorinated counterparts through a series of electronic structure calculations utilizing multireference methods and by simulating their metal L-edge and ligand (nitrogen and fluorine) K-edge X-ray absorption spectra (XAS) in an angle-resolved manner. Simulations targeting different ground-state symmetries, where relevant, have been conducted to observe changes in the N K-edge lineshape. The applicability of the quasi-degenerate formulation of -electron valence state perturbation theory (QD-NEVPT2) for L-edge X-ray absorption spectroscopy (XAS) is evaluated, alongside the use of a restricted active space (RAS) formalism to describe the final-state multiplets generated by L-shell X-ray processes. Our findings provide valuable insights into the electronic properties of TMPcs, in particular with respect to the effect of fluorination, and demonstrate the broad applicability of various formulations of NEVPT2 in spectral simulations. Moreover, this study highlights the utility of manual truncation of the configuration spaces in order to allow for large active orbital spaces in aforementioned calculations.
本研究通过一系列利用多参考方法的电子结构计算,并以角分辨方式模拟其金属L边和配体(氮和氟)K边X射线吸收光谱(XAS),探索了钴、铁和锰酞菁(TMPcs)及其全氟对应物的电子结构。在相关情况下,针对不同基态对称性进行了模拟,以观察N K边线形的变化。评估了用于L边X射线吸收光谱(XAS)的-电子价态微扰理论(QD-NEVPT2)的准简并公式的适用性,以及使用受限活性空间(RAS)形式来描述由L壳层X射线过程产生的终态多重态。我们的研究结果为TMPcs的电子性质提供了有价值的见解,特别是关于氟化的影响,并证明了NEVPT2的各种公式在光谱模拟中的广泛适用性。此外,本研究强调了手动截断构型空间以便在上述计算中允许大活性轨道空间的实用性。