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Unified interpretation of pre-edge x-ray absorption fine structures in 3d transition metal compounds

机译:3D过渡金属化合物预先边缘X射线吸收细结构的统一解释

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Here we discuss origin of pre-edge features in the K-edge absorption spectra of transition metal atoms in octahedral coordination, in oxides and sulphides. We provide a unifying interpretation on the basis of multiple scattering simulations performed with different cluster models. We find that the pre-edge features arise due to hybridisation of the orbitals belonging to the central atom with the higher-shell metal orbitals. The results are obtained by performing multiple scattering simulations with cluster of size equal to the cation-cation plus the cation-anion bond lengths in order to ensure that the higher-shell metal atoms remain in the octahedral coordination. Within this framework, we are able to identify the electronic structure of the metal atoms and the ligand-field characters looking at position, shape and intensity of the different features observed in the XANES spectra.
机译:在这里,我们讨论八面体协调的过渡金属原子的K-Edge吸收光谱中的预先前沿特征的起源,氧化物和硫化物。我们基于使用不同的集群模型执行的多个散射模拟提供统一的解释。我们发现,由于属于具有较高壳金属轨道的中央原子的轨道的杂交,所以出现预先前沿的特征。通过对阳离子阳离子簇的簇进行多种散射模拟来获得结果,以确保较高壳金属原子留在八面体配位中。在该框架内,我们能够识别金属原子的电子结构和观察在XANES光谱中观察到的不同特征的位置,形状和强度的配体和强度。

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