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Improved charge transfer multiplet method to simulate M- and L-edge X-ray absorption spectra of metal-centered excited states

机译:改进的电荷转移多功能方法模拟金属兴奋状态的M和L边缘X射线吸收光谱

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摘要

Charge transfer multiplet (CTM) theory is a computationally undemanding and highly mature method for simulating the soft X-ray spectra of first-row transition metal complexes. However, CTM theory has seldom been applied to the simulation of excited-state spectra. In this article, the CTM4XAS software package is extended to simulateM_(2,3)- and L_(2,3)-edge spectra for the excited states of first-row transition metals and also interpret CTM eigenfunctions in terms of Russell-Saunders term symbols. These new programs are used to reinterpret the recently reported excited-state M_(2,3)-edge difference spectra of photogenerated ferrocenium cations and to propose alternative assignments for the electronic state of these cations responsible for the spectroscopic features. These new programs were also used to model the L_(2,3)-edge spectra of Fe~(II) compounds during nuclear relaxation following photoinduced spin crossover and to propose spectroscopic signatures for their vibrationally hot states.
机译:电荷转移多功能(CTM)理论是一种计算不明的和高度成熟的方法,用于模拟一排转变金属配合物的软X射线光谱。然而,CTM理论很少应用于兴奋状态光谱的模拟。在本文中,CTM4XAS软件包扩展到Simulatem_(2,3) - 和L_(2,3)-Edge光谱,用于兴奋的一行过渡金属的兴奋状态,并在Russell-Saunders术语方面解释CTM特征功能符号。这些新程序用于重新诠释最近报告的兴奋状态M_(2,3)差异的光生成的铁源阳离子差异,并提出负责光谱特征的这些阳离子的电子状态的替代分配。这些新的程序也用于在光诱导的旋转交叉后核弛豫期间为Fe〜(II)化合物的L_(2,3)化合物进行模拟,并提出振动热状态的光谱签名。

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