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Fluorenylporphyrins functionalized by electrochromic ruthenium units as redox-triggered fluorescence switches.
Zhang, Xu; Abid, Seifallah; Shi, Limiao; Williams, J A Gareth; Fox, Mark A; Miomandre, Fabien; Tourbillon, Clarisse; Audibert, Jean-Frédéric; Mongin, Olivier; Paul, Frédéric; Paul-Roth, Christine O.
Afiliación
  • Zhang X; Univ Rennes, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France. christine.paul@univ-rennes1.fr and Department of Chemistry, College of Chemistry and Chemical Engineering, Chifeng University, Chifeng, P. R. China.
  • Abid S; Univ Rennes, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France. christine.paul@univ-rennes1.fr.
  • Shi L; Univ Rennes, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France. christine.paul@univ-rennes1.fr.
  • Williams JAG; Department of Chemistry, Durham University, Durham, DH1 3LE, U.K.
  • Fox MA; Department of Chemistry, Durham University, Durham, DH1 3LE, U.K.
  • Miomandre F; PPSM, CNRS, Ecole normale supérieure Paris-Saclay, 61 avenue du Président Wilson, 94235 Cachan, France.
  • Tourbillon C; PPSM, CNRS, Ecole normale supérieure Paris-Saclay, 61 avenue du Président Wilson, 94235 Cachan, France.
  • Audibert JF; PPSM, CNRS, Ecole normale supérieure Paris-Saclay, 61 avenue du Président Wilson, 94235 Cachan, France.
  • Mongin O; Univ Rennes, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France. christine.paul@univ-rennes1.fr.
  • Paul F; Univ Rennes, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France. christine.paul@univ-rennes1.fr.
  • Paul-Roth CO; Univ Rennes, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France. christine.paul@univ-rennes1.fr.
Dalton Trans ; 48(31): 11897-11911, 2019 Aug 21.
Article en En | MEDLINE | ID: mdl-31310264
ABSTRACT
Two dyads containing tris- and tetrakis-meso-fluorenyl-substituted porphyrin and ethynylruthenium units, 1 and 2, were investigated by emission spectro-electrochemical (SEC) methods for their potential use as fluorescence switches. The ruthenium group as a potential electron donor and the porphyrin as a potential electron acceptor are connected by a phenylene bridge in 1 and by a fluorenylene bridge in 2. The new fluorenyl-linked dyad 2 was probed by UV-visible, near-infrared (NIR) and infrared (IR) absorption SEC methods, and the properties interpreted with the aid of hybrid-DFT computations, for comparison with reported data for 1. The porphyrin-based fluorescence of 1 decreased in intensity upon oxidation to 1+ and decreased further on oxidising 1+ to 12+. A much weaker change in the fluorescence intensity of 2 was observed upon oxidation to 2+ but the intensity decreased upon subsequent oxidation of 2+ to 22+. These findings contrast with data reported for some other porphyrins appended with redox-active ruthenium or iron units, where fluorescence intensities increase upon oxidation of the peripheral metal centers, but they match data reported more recently for closely related arrays. A rationale for these apparently contrasting observations is proposed.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Dalton Trans Asunto de la revista: QUIMICA Año: 2019 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Dalton Trans Asunto de la revista: QUIMICA Año: 2019 Tipo del documento: Article