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用高分辨率光电子能谱探测UO⁺的电子结构。

Probing the electronic structure of UO+ with high-resolution photoelectron spectroscopy.

作者信息

Goncharov Vasiliy, Kaledin Leonid A, Heaven Michael C

机构信息

Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Chem Phys. 2006 Oct 7;125(13):133202. doi: 10.1063/1.2213262.

Abstract

The pulsed field ionization-zero kinetic energy photoelectron technique has been used to observe the low-lying energy levels of UO+. Rotationally resolved spectra were recorded for the ground state and the first nine electronically excited states. Extensive vibrational progressions were characterized. Omega+ assignments were unambiguously determined from the first rotational lines identified in each vibronic band. Term energies, vibrational frequencies, and anharmonicity constants for low-lying energy levels of UO+ are reported. In addition, accurate values for the ionization energies for UO [48,643.8(2) cm(-1)] and U [49,957.6(2) cm(-1)] were determined. The pattern of low-lying electronic states for UO+ indicates that they originate from the U3+(5f3)O2- configuration, where the uranium ion-centered interactions between the 5f electrons are significantly stronger than interactions with the intramolecular electric field. The latter lifts the degeneracy of U3+ ion-core states, but the atomic angular momentum quantum numbers remain reasonably well defined.

摘要

脉冲场电离 - 零动能光电子技术已被用于观测UO⁺的低能级。记录了基态和前九个电子激发态的转动分辨光谱。对广泛的振动进展进行了表征。从每个振动电子能带中识别出的第一条转动谱线明确确定了Ω⁺归属。报告了UO⁺低能级的项能量、振动频率和非谐性常数。此外,还确定了UO [48,643.8(2) cm⁻¹] 和U [49,957.6(2) cm⁻¹] 的准确电离能值。UO⁺的低电子态模式表明它们源自U³⁺(5f³)O²⁻构型,其中5f电子之间以铀离子为中心的相互作用明显强于与分子内电场的相互作用。后者消除了U³⁺离子芯态的简并性,但原子角动量量子数仍保持相当明确的定义。

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