首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >A theoretical characterization of covalency in rare earth complexes through their absorption electronic properties: f-f transitions
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A theoretical characterization of covalency in rare earth complexes through their absorption electronic properties: f-f transitions

机译:稀土配合物的吸收电子特性:f-f跃迁的理论价表征

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Experimental uncertainties concerning the coordination mode of trivalent plutonium in concentrated LiCl have led us to theoretically evaluate the f-f transitions of a series of rare earth aquo and chloro complexes. The calculation of Pr(III), U(III), Np(III), and Pu(III) systems' spectra was undertaken using the LFDFT (ligand field density functional theory) route that combines the backgrounds of ligand field (LF) theory with Kohn-Sham orbitals. LF parameters are fitted to previous DFT calculations, thus preventing the use of empirical data. The f-f transitions values are globally well predicted, but the lack of accurate experimental references can sometimes hinder reliable comparisons. Despite this, the nephelauxetic effect from aquo to chloro complexes is clearly observed through both spectral red shifts and the decrease in F-2, the Slater-Condon parameter. Accordingly, this work provides the first theoretical characterization of covalency in trivalent f elements through their electronic spectra.
机译:关于浓LiCl中三价p配位模式的实验不确定性,使我们从理论上评估了一系列稀土水和氯配合物的f-f跃迁。 Pr(III),U(III),Np(III)和Pu(III)系统的光谱的计算是通过结合配体场(LF)理论背景的LFDFT(配体场密度泛函理论)路线进行的与Kohn-Sham轨道有关。 LF参数适合先前的DFT计算,因此会阻止使用经验数据。总体上可以很好地预测f-f转换值,但是缺少准确的实验参考有时会妨碍可靠的比较。尽管如此,通过光谱红移和F-2(Slater-Condon参数)的降低,可以清楚地观察到从水合化合物到氯配合物的肾上腺素作用。因此,这项工作通过其电子光谱为三价f元素的共价提供了第一个理论表征。

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