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Chemical science. 2020 Dec 9;12(10):3558-3567. doi: 10.1039/d0sc05193d Q17.42024

Cerium(iv) complexes with guanidinate ligands: intense colors and anomalous electronic structures

硝基胍配体铈(IV)配合物的合成及其独特的电子结构和颜色性质研究 翻译改进

Yusen Qiao  1  2, Haolin Yin  1, Liane M Moreau  2, Rulin Feng  3, Robert F Higgins  1, Brian C Manor  1, Patrick J Carroll  1, Corwin H Booth  2, Jochen Autschbach  3, Eric J Schelter  1

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作者单位

  • 1 P. Roy and Diana T. Vagelos Laboratories, Department of Chemistry, University of Pennsylvania 231 South 34 Street Philadelphia Pennsylvania 19104 USA schelter@sas.upenn.edu.
  • 2 Chemical Sciences Division, Lawrence Berkeley National Laboratory Berkeley California 94720 USA.
  • 3 Department of Chemistry, University at Buffalo, State University of New York Buffalo New York 14260 USA.
  • DOI: 10.1039/d0sc05193d PMID: 34163629

    摘要 Ai翻译

    A series of cerium(iv) mixed-ligand guanidinate-amide complexes, {[(Me3Si)2NC(N i Pr)2] x CeIV[N(SiMe3)2]3-x }+ (x = 0-3), was prepared by chemical oxidation of the corresponding cerium(iii) complexes, where x = 1 and 2 represent novel complexes. The Ce(iv) complexes exhibited a range of intense colors, including red, black, cyan, and green. Notably, increasing the number of the guanidinate ligands from zero to three resulted in significant redshift of the absorption bands from 503 nm (2.48 eV) to 785 nm (1.58 eV) in THF. X-ray absorption near edge structure (XANES) spectra indicated increasing f occupancy (n f) with more guanidinate ligands, and revealed the multiconfigurational ground states for all Ce(iv) complexes. Cyclic voltammetry experiments demonstrated less stabilization of the Ce(iv) oxidation state with more guanidinate ligands. Moreover, the Ce(iv) tris(guanidinate) complex exhibited temperature independent paramagnetism (TIP) arising from the small energy gap between the ground- and excited states with considerable magnetic moments. Computational analysis suggested that the origin of the low energy absorption bands was a charge transfer between guanidinate π orbitals that were close in energy to the unoccupied Ce 4f orbitals. However, the incorporation of sterically hindered guanidinate ligands inhibited optimal overlaps between Ce 5d and ligand N 2p orbitals. As a result, there was an overall decrease of ligand-to-metal donation and a less stabilized Ce(iv) oxidation state, while at the same time, more of the donated electron density ended up in the 4f shell. The results indicate that incorporating guanidinate ligands into Ce(iv) complexes gives rise to intense charge transfer bands and noteworthy electronic structures, providing insights into the stabilization of tetravalent lanthanide oxidation states.

    Keywords:guanidinate ligands; intense colors; electronic structures

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    期刊名:Chemical science

    缩写:CHEM SCI

    ISSN:2041-6520

    e-ISSN:2041-6539

    IF/分区:7.4/Q1

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    Cerium(iv) complexes with guanidinate ligands: intense colors and anomalous electronic structures