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The role of the 5f valence orbitals of early actinides in chemical bonding

机译:早期act系元素5f价轨道在化学键合中的作用

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摘要

One of the long standing debates in actinide chemistry is the level of localization and participation of the actinide 5f valence orbitals in covalent bonds across the actinide series. Here we illuminate the role of the 5f valence orbitals of uranium, neptunium and plutonium in chemical bonding using advanced spectroscopies: actinide M4,5 HR-XANES and 3d4f RIXS. Results reveal that the 5f orbitals are active in the chemical bonding for uranium and neptunium, shown by significant variations in the level of their localization evidenced in the spectra. In contrast, the 5f orbitals of plutonium appear localized and surprisingly insensitive to different bonding environments. We envisage that this report of using relative energy differences between the 5fδ/ϕ and 5fπ*/5fσ* orbitals as a qualitative measure of overlap-driven actinyl bond covalency will spark activity, and extend to numerous applications of RIXS and HR-XANES to gain new insights into the electronic structures of the actinide elements.
机译:act系元素化学领域的长期争论之一是is系元素系列中共价键中the系元素5f价轨道的定位和参与程度。在这里,我们使用先进的光谱学方法来分析铀,n和and的5f价轨道在化学键合中的作用:act系元素M4,5 HR-XANES和3d4f RIXS。结果表明,5f轨道在铀和n的化学键合中具有活性,这在光谱中证明了其定位水平的显着变化即可表明。相比之下,p的5f轨道显得局部且对不同的键合环境不敏感。我们设想该报告使用5fδ/ ϕ和5fπ* /5fσ*轨道之间的相对能量差作为重叠驱动的光化基键共价的定性度量将激发活性,并扩展到RIXS和HR-XANES的许多应用中对the系元素电子结构的新见解。

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