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四氯化铀化合物中的电荷转移振子跃迁。

Charge transfer vibronic transitions in uranyl tetrachloride compounds.

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

J Phys Chem A. 2012 Jan 19;116(2):855-64. doi: 10.1021/jp210046j. Epub 2012 Jan 9.

Abstract

The electronic and vibronic interactions of uranyl (UO(2))(2+) in three tetrachloride crystals have been investigated with spectroscopic experiments and theoretical modeling. Analysis and simulation of the absorption and photoluminescence spectra have resulted in a quantitative understanding of the charge transfer vibronic transitions of uranyl in the crystals. The spectra obtained at liquid helium temperature consist of extremely narrow zero-phonon lines (ZPL) and vibronic bands. The observed ZPLs are assigned to the first group of the excited states formed by electronic excitation from the 3σ ground state into the f(δ,ϕ) orbitals of uranyl. The Huang-Rhys theory of vibronic coupling is modified successfully for simulating both the absorption and luminescence spectra. It is shown that only vibronic coupling to the axially symmetric stretching mode is Franck-Condon allowed, whereas other modes are involved through coupling with the symmetric stretching mode. The energies of electronic transitions, vibration frequencies of various local modes, and changes in the O═U═O bond length of uranyl in different electronic states and in different coordination geometries are evaluated in empirical simulations of the optical spectra. Multiple uranyl sites derived from the resolution of a superlattice at low temperature are resolved by crystallographic characterization and time- and energy-resolved spectroscopic studies. The present empirical simulation provides insights into fundamental understanding of uranyl electronic interactions and is useful for quantitative characterization of uranyl coordination.

摘要

采用光谱实验和理论建模研究了三氯化物晶体中铀酰(UO(2))(2+)的电子和振子相互作用。对吸收和光致发光光谱的分析和模拟导致对晶体中铀酰的电荷转移振子跃迁进行了定量理解。在液氦温度下获得的光谱由极窄的零声子线(ZPL)和振子带组成。观察到的 ZPL 被分配给由电子从 3σ基态激发到铀酰的 f(δ,ϕ)轨道形成的第一组激发态。成功地修改了 Huang-Rhys 振子耦合理论以模拟吸收和发光光谱。结果表明,只有与轴向对称伸缩模式的振子耦合是 Franck-Condon 允许的,而其他模式则通过与对称伸缩模式的耦合而涉及。在光学光谱的经验模拟中评估了不同电子态和不同配位几何形状下铀酰的电子跃迁能量、各种局域模式的振动频率以及 O═U═O 键长的变化。通过低温超晶格的分辨率,可以解析出多个铀酰位,通过晶体学表征和时间和能量分辨光谱研究来解析。本经验模拟提供了对铀酰电子相互作用的基本理解的深入了解,并有助于铀酰配位的定量表征。

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