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Structural and Photophysical Properties of Lanthanide Coordination Frameworks with Pentafluorobenzoate
Viviane Pereira de Souza
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Create a topicTrivalent 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 5D0 → 7F2 transition in the EuMOF is less intense than the 5D0 →7F1, transition suggesting the presence of an inversion center. However, for the heteronuclear Eu-GdMOF presents the typical 5D0 → 7FJ (J = 0 - 4) transitions, with 5D0 → 7F2 being more intense than 5D0 →7F1. 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 5D0 → 7FJ (J = 0 - 4) transitions of Eu3+ and 5D4 → 7FJ (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 5D0 → 7F2 or at 5D4 → 7F5, 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.
Ricardo Lima Guimarães
Olá Viviane, parabéns pelo trabalho e pela bela apresentação.
Talita Valverde Ferreira da Silva
Olá, Viviane, excelente apresentação e excelente trabalho! Você pretende tstar esse mesmo ligante com outros lantanídeos ?
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.
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.
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Viviane Pereira de Souza
Olá, Prof. Ricardo! Muito obrigada pelo retorno.