Roemelt Christina, Peredkov Sergey, Neese Frank, Roemelt Michael, DeBeer Serena
Max Planck Institute for Chemical Energy Conversion, Stiftstr. 34-36, 45470 Mülheim an der Ruhr, Germany.
Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470 Mülheim an der Ruhr, Germany.
Phys Chem Chem Phys. 2024 Jul 24;26(29):19960-19975. doi: 10.1039/d4cp00967c.
Valence-to-core (VtC) X-ray emission spectroscopy offers the opportunity to probe the valence electronic structure of a system filtered by selection rules. From this, the nature of its ligands can be inferred. While a preceding 1s ionization creates a core hole, in VtC XES this core hole is filled with electrons from mainly ligand based orbitals. In this work, we investigated the trends in the observed VtC intensities for a series of transition metal halides, which spans the first row transition metals from manganese to copper. Further, with the aid of computational studies, we corroborated these trends and identified the mechanisms and factors that dictate the observed intensity trends. Small amounts of metal p contribution to the ligand orbitals are known to give rise to intensity of a VtC transition. By employing an LCAO (linear combination of atomic orbitals) approach, we were able to assess the amount of metal p contribution to the ligand molecular orbitals, as well as the role of the transition dipole moment and correlate these factors to the experimentally observed intensities. Finally, by employing an ano (atomic natural orbital) basis set within the calculations, the nature of the metal p contribution (3p 4p) was qualitatively assessed and their trends discussed within the same transition metal halide series.
价层到内层(VtC)X射线发射光谱提供了一个机会,来探测由选择规则筛选的系统的价电子结构。由此,可以推断其配体的性质。在之前的1s电离过程中会产生一个内层空穴,而在VtC XES中,这个内层空穴主要由基于配体的轨道上的电子填充。在这项工作中,我们研究了一系列过渡金属卤化物(涵盖从锰到铜的第一排过渡金属)的VtC强度观测趋势。此外,借助计算研究,我们证实了这些趋势,并确定了决定观测强度趋势的机制和因素。已知少量金属p对配体轨道的贡献会导致VtC跃迁的强度。通过采用原子轨道线性组合(LCAO)方法,我们能够评估金属p对配体分子轨道的贡献量,以及跃迁偶极矩的作用,并将这些因素与实验观测强度相关联。最后,通过在计算中采用原子自然轨道(ano)基组,定性评估了金属p贡献(3p、4p)的性质,并在同一过渡金属卤化物系列中讨论了它们的趋势。