Brown Stephen E, Pike Sebastian D
Department of Chemistry, University of Warwick CV4 7AL Coventry UK
Chem Sci. 2025 May 28;16(25):11659-11668. doi: 10.1039/d5sc00905g. eCollection 2025 Jun 25.
The absorption spectra of a series of Ce-oxo clusters (molecular nanoparticles) with sizes ranging from 3 to 100 Ce atoms per cluster are reported. The O 2p to Ce 4f charge-transfer absorption onset in these systems is unaffected by size and almost identical to that of 5 nm CeO particles and other Ce based materials such as the metal-organic framework Ce-UiO-66. This clearly demonstrates that in CeO based systems, with highly localized 4f LUMO orbitals, quantum confinement effects are not influential on electronic structure. Importantly, this allows the use of ultrasmall ceria particles in (visible light) photochemical applications without detrimental band-gap enlarging size-effects. Changes in colour in CeO materials and these Ce-oxo clusters are instead clearly attributed to the presence of (defective) surface sites. Surface Ce(iii) sites in mixed-valence clusters contribute a Ce(iii)/Ce(iv) intervalence charge transfer transition in the visible region, which affects their colour. Ce clusters with a range of aliphatic and aromatic carboxylate ligands are studied, to compare the effect of surface ligands on the electronic structure. Ligand influence on the absorption spectra is only observed when highly conjugated (naphthyl) or strongly electron donating substituents (anisole or aniline) are present.
报道了一系列铈氧簇(分子纳米颗粒)的吸收光谱,每个簇中铈原子的数量在3到100个之间。这些体系中从O 2p到Ce 4f的电荷转移吸收起始不受尺寸影响,几乎与5 nm CeO颗粒以及其他铈基材料(如金属有机框架Ce-UiO-66)相同。这清楚地表明,在基于CeO的体系中,由于4f LUMO轨道高度局域化,量子限域效应不会影响电子结构。重要的是,这使得超小氧化铈颗粒可用于(可见光)光化学应用,而不会产生有害的带隙增大尺寸效应。相反,CeO材料和这些铈氧簇中的颜色变化显然归因于(有缺陷的)表面位点的存在。混合价簇中的表面Ce(iii)位点在可见光区域贡献了Ce(iii)/Ce(iv)价间电荷转移跃迁,这影响了它们的颜色。研究了一系列具有脂肪族和芳香族羧酸配体的铈簇,以比较表面配体对电子结构的影响。只有当存在高度共轭(萘基)或强给电子取代基(苯甲醚或苯胺)时,才会观察到配体对吸收光谱的影响。