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Molecular and electronic structures of cerium and cerium suboxide clusters

机译:铈和二氧化铈簇的分子和电子结构

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The anion photoelectron (PE) spectra of Ce2Oy- (y = 1, 2), Ce3Oy- (y = 0-4), Ce4Oy- (y = 0-2), and Ce5Oy- (y = 1, 2) are reported and analyzed with supporting results from density functional theory calculations. The PE spectra all exhibit an intense electronic transition to the neutral ground state, all falling in the range of 0.7 to 1.1 eV electron binding energy, with polarization dependence consistent with detachment from diffuse Ce 6s-based molecular orbitals. There is no monotonic increase in electron affinity with increasing oxidation. A qualitative picture of how electronic structure evolves with an oxidation state emerges from comparison between the spectra and the computational results. The electronic structure of the smallest metallic cluster observed in this study, Ce-3, is similar to the bulk structure in terms of atomic orbital occupancy (4 f 5d(2) 6s). Initial cerium cluster oxidation involves largely ionic bond formation via Ce 5d and O 2p orbital overlap (i.e., larger O 2p contribution), with Ce-O-Ce bridge bonding favored over Ce=O terminal bond formation. With subsequent oxidation, the Ce 5d-based molecular orbitals are depleted of electrons, with the highest occupied orbitals described as diffuse Ce 6s based molecular orbitals. In the y <= (x + 1) range of oxidation states, each Ce center has a singly occupied non-bonding 4 f orbital. The PE spectrum of Ce3O4- is unique in that it exhibits a single nearly vertical transition. The highly symmetric structure predicted computationally is the same structure determined from Ce3O4+ IR predissociation spectra [A. M. Burow et al., Phys. Chem. Chem. Phys. 13, 19393 (2011)], indicating that this structure is stable in -1, 0, and +1 charge states. Spectra of clusters with x >= 3 exhibit considerable continuum signal above the ground state transition; the intensity of the continuum signal decreases with increasing oxidation. This feature is likely the result of numerous quasi-bound anion states or two-electron transitions possible in molecules with abundant nearly degenerate partially occupied orbitals. Published by AIP Publishing.
机译:报告了Ce2Oy-(y = 1,2),Ce3Oy-(y = 0-4),Ce4Oy-(y = 0-2)和Ce5Oy-(y = 1,2)的阴离子光电子(PE)光谱。并结合密度泛函理论计算的支持结果进行分析。 PE光谱均显示出强烈的电子跃迁至中性基态,均落在0.7至1.1 eV电子结合能的范围内,其极化依赖性与从弥散的Ce 6s基分子轨道的脱离一致。电子亲和力不会随着氧化的增加而单调增加。通过光谱与计算结果之间的比较,可以得出有关电子结构如何以氧化态演化的定性描述。在本研究中观察到的最小金属簇的电子结构Ce-3在原子轨道占有率方面类似于本体结构(4 f 5d(2)6s)。铈的初始簇氧化主要涉及通过Ce 5d和O 2p轨道重叠(即更大的O 2p贡献)形成离子键,其中Ce-O-Ce桥键优于Ce = O端键的形成。随着随后的氧化,基于Ce 5d的分子轨道被电子耗尽,占据最高的轨道被描述为基于Ce 6s的扩散分子轨道。在y <=(x + 1)的氧化态范围内,每个Ce中心都有一个单独占据的非键合4 f轨道。 Ce3O4-的PE光谱是独特的,因为它表现出单个接近垂直的跃迁。通过计算预测的高度对称结构与根据Ce3O4 + IR预解离光谱确定的结构相同[A. M.Burow等,Phys。化学化学物理13,19393(2011)],表明此结构在-1、0和+1电荷状态下稳定。 x> = 3的簇的光谱在基态跃迁之上显示出相当大的连续谱信号;连续信号的强度随着氧化的增加而降低。该特征可能是由于在具有大量几乎简并的部分占据的轨道的分子中可能存在许多准结合的阴离子状态或两电子跃迁的结果。由AIP Publishing发布。

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