Structural and Photophysical Properties of Lanthanide Coordination Frameworks with Pentafluorobenzoate

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  • Presentation type: Sessão Coordenada PG - Pós Graduando
  • Track: Química de Materiais - MAT
  • Keywords: Luminescence; lanthanide; MOF; Ln-Ln interactions; energy transfer;
  • 1 UFPE

Structural and Photophysical Properties of Lanthanide Coordination Frameworks with Pentafluorobenzoate

Viviane Pereira de Souza

UFPE

Abstract

Trivalent lanthanide Ln3+ ions have unique photophysical properties and their organic frameworks (LnMOFs) are relevant for many applications. These and other properties are dependent upon the interactions between the Ln3+ ions, which are ubiquitous in LnMOF. Therefore, they are interesting platforms to study these interactions. Pentafluorobenzoic acid (LH) is a strong acid (pKa = 1.48) that can yield coordination compounds (mono and dinuclear and MOFs) with Ln3+ ions. Open synthesis at room-temperature and at 80 °C and liquid-assisted gridding (LAG) mechanochemical method were employed to synthesize the dimer [Ln2(L)6(H2O)8](H2O)2 (Ln = Eu, Gd, Tb) that is already described as well as a new mixed Eu-GdMOF [Ln(L)2(LH)(H2O)4](Cl)(LH)(H2O)2. It structure, determined by crystallography, is quite unusual, because the Ln centers are connected by a single symmetric bridge ligand and a Ln-Ln distance of 6.865 Å, which has not been observed in frameworks of lanthanide-benzoates. The crystal asymmetric unit does not possess an inversion center, however, the crystal packing composed of four asymmetric units does present a center of inversion. Upon excitation at wavelengths larger than 277 nm, the emission intensity of the 5D07F2 transition in the EuMOF is less intense than the 5D07F1, transition suggesting the presence of an inversion center. However, for the heteronuclear Eu-GdMOF presents the typical 5D07FJ (J = 0 - 4) transitions, with 5D07F2 being more intense than 5D07F1. These changes in the relative intensities suggest that (i) the Eu-GdMOF was obtained and the inversion center in the unit cell is no longer present because the replacement of Eu3+ by Gd3+, and (ii) the interactions between the Eu3+ ions are sufficiently strong for the four asymmetric units to behave as a single effective emission center. In the mixed Eu-TbMOF, the typical 5D07FJ (J = 0 - 4) transitions of Eu3+ and 5D47FJ (J = 6 - 1) of Tb3+ were observed upon excitation at the ligand states. The excitation spectra present a band due to the 7F6 5D4 Tb3+ transition when the emission were monitored at 5D07F2 or at 5D47F5, indicating energy transfer from Tb3+ to Eu3+ ions. The reverse energy transfer Eu3+ → Tb3+ was not observed either in the emission or the excitation spectra. The X-ray data as well as the luminescence results showed that the structure of the coordination compounds (dinuclear and MOF) depends on the synthetic method, that the Eu3+ ions interact strongly even at distances of ca. 7 Å, and that Tb3+ transfer energy to Eu3+ ions. In addition to the novelty of the LnMOF and mixed LnLn’MOFs, their photophysical properties are being explored in several applications.

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Author

Viviane Pereira de Souza

Olá, Prof. Ricardo! Muito obrigada pelo retorno.

Author

Viviane Pereira de Souza

Olá, Talita! Agradeço o comentário e o questionamento. Nós pretendemos estudar a complexação do ligante com diferentes íons da série lantanídica para obtenção de complexos dímeros e redes e estudar a fluorescência e fosforescência na região do UV-vis e IR. A complexação com íons gadolínio e itérbio foi realizada, os complexos estão em etapa de caracterização estrutural e espectroscópica, e a complexação com outros íons Ln3+ ainda será testada.

Author

Viviane Pereira de Souza

Olá, Talita! Agradeço o comentário e o questionamento. Nós pretendemos estudar a complexação do ligante com diferentes íons da série lantanídica para obtenção de complexos dímeros e redes e estudar a fluorescência e fosforescência na região do UV-vis e IR. A complexação com íons gadolínio e itérbio foi realizada, os complexos estão em etapa de caracterização estrutural e espectroscópica, e a complexação com outros íons Ln3+ ainda será testada.