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The electron shuffle: Cerium influences samarium 4f orbital occupancy in heteronuclear Ce-Sm oxide clusters

机译:电子洗牌:铈在异核CE-SM氧化物簇中影响钐4F轨道入住率

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The anion photoelectron (PE) spectra along with supporting results of density functional theory (DFT) calculations on SmO-, SmCeOy-, and Sm2Oy- (y = 1, 2) are reported and compared to previous results on CeO- [M. Ray et al., J. Chem. Phys. 142, 064305 (2015)] and Ce2Oy- (y = 1, 2) [J. O. Kafader et al., J. Chem. Phys. 145, 154306 (2016)]. Similar to the results on CexOy- clusters, the PE spectra of SmO-, SmCeOy-, and Sm2Oy- (y = 1, 2) all exhibit electronic transitions to the neutral ground state at approximately 1 eV e(-) BE. The Sm centers in SmO and Sm2O2 neutrals can be described with the 4f(5)6s superconfiguration, which is analogous to CeO and Ce2O2 neutrals in which the Ce centers can be described with the 4f 6s superconfiguration (Z(Ce) = Z(Sm) - 4). The Sm center in CeSmO2, in contrast, has a 4f(6) occupancy, while the Ce center maintains the 4f 6s superconfiguration. The less oxidized Sm centers in both Sm2O and SmCeO have 4f(6) 6s occupancies. The 4f(6) subshell occupancy results in relatively weak Sm-O bond strengths. If this extra 4f occupancy also occurs in bulk Sm-doped ceria, it may play a role in the enhanced O2- ionic conductivity in Sm-doped ceria. Based on the results of DFT calculations, the heteronuclear Ce-Sm oxides have molecular orbitals that are distinctly localized Sm 4f, Sm 6s, Ce 4f, and Ce 6s orbitals. The relative intensity of two electronic bands in the PE spectrum of Sm2O- exhibits an unusual photon energy-dependence, and the PE spectrum of Sm2O2- exhibits a photon energy-dependent continuum signal between two electronic transitions. Several explanations, including the high magnetic moment of these suboxide species and the presence of low-lying quasi-bound anion states, are considered. Published by AIP Publishing.
机译:报告阴离子光电(PE)光谱和支持对Smo,Smceoy-和SM2OY-(Y = 1,2)上的密度官能理论(DFT)计算的支持结果,并与先前的CEO-[M. Ray等人,J.Chem。物理。 142,064305(2015)]和Ce2oy-(Y = 1,2)[J. O. Kafader等,J.Chem。物理。 145,154306(2016)]。类似于Cexoy-簇的结果,Smo-,Smceoy-和SM2OY-(Y = 1,2)的PE光谱均在大约1eV E( - )的大约1eV E( - )的中性接地状态下表现出电子转变。 SMO和SM2O2中性中的SM中心可以用4F(5)6S超全配置来描述,这与CE2O2中性相似,其中CE中心可以用4F 6S超全来描述(Z(CE)= Z(SM ) - 4)。相比之下,CESMO2的SM中心具有4F(6)占用,而CE中心保持4F 6S的超级配置。 SM2O和SMCEO中较少的氧化SM中心具有4F(6)6S次占用。 4F(6)子壳占用率为相对较弱的SM-O键合强度。如果此额外的4F占用率也发生在散装SM掺杂的二氧化铈中,它可能在SM掺杂的二氧化铈中的增强的O2-离子电导率中发挥作用。基于DFT计算的结果,异核CE-SM氧化物具有明显局部的SM 4F,SM 6S,CE 4F和CE 6S轨道的分子轨道。 SM2O- PE光谱中的两个电子带中的相对强度表现出不寻常的光子能量依赖性,并且SM2O2的PE谱在两个电子转换之间呈现光子能量依赖性连续体信号。考虑了几种解释,包括这些亚氧化物物种的高磁矩以及低洼的准结合阴离子状态的存在。通过AIP发布发布。

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