Stéphane Maisonneuve
École normale supérieure de Cachan
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Featured researches published by Stéphane Maisonneuve.
Inorganic Chemistry | 2010
Ludivine Garcia; Stéphane Maisonneuve; Juan Xie; Régis Guillot; Pierre Dorlet; Eric Rivière; Michel Desmadril; François Lambert; Clotilde Policar
In coordination chemistry, ligand shape can be used to tune properties, such as metal selectivity, coordination number, electronic structure, redox potential, and metal center stereochemistry including coordination helicates formation, and also to generate cavities for encapsulation. The results presented in this article indicate that two epimeric glycoligands (3 and 4) based on the conformationally restrained xylo- and ribo-1,2-O-isopropylidenefurano scaffolds are preorganized in water through pi-pi stacking due to hydrophobic interactions, as evidenced from excimer observation. The structure obtained in the solid state for one of the Cu(II) complexes (5) is chiral, with an original helical chirality arising from the coiling of the two ligands around the Cu-Cu axis. It shows an unusual double-deck type structure, with pi-pi interaction between two triazoyl-pyridyl rings and with a small cavity between the two Cu(II) ions able to host a bridging water molecule, as suggested by electron paramagnetic resonance. The Cu(II) complex from the epimeric ligand (6) shows similar properties with a mirror-image CD spectrum in the d-d region of the Cu(II). There is a predetermination of chirality at the metal center by the glycoligand induced by the C3 configuration, 6 and 5 being pseudoenantiomers. Interestingly, the stereochemistry at the metal center is here controlled by the combination of pi-stacking and chiral backbone.
Beilstein Journal of Organic Chemistry | 2014
Stéphane Maisonneuve; Rémi Métivier; Pei Yu; Keitaro Nakatani; Juan Xie
Summary A multichromophoric glucopyranoside 2 bearing three dicyanomethylenepyran (DCM) fluorophores and one diarylethene (DAE) photochrome has been prepared by Cu(I)-catalyzed alkyne–azide cycloaddition reaction. The fluorescence of 2 was switched off upon UV irradiation, in proportion with the open to closed form (OF to CF) conversion extent of the DAE moiety. A nearly 100% Förster-type resonance energy transfer (FRET) from all three DCM moieties to a single DAE (in its CF) moiety was achieved. Upon visible irradiation, the initial fluorescence intensity was recovered. The observed photoswiching is reversible, with excellent photo resistance.
Journal of Organic Chemistry | 2007
Juan Xie; Mickaël Ménand; Stéphane Maisonneuve; Rémi Métivier
Tetrahedron Letters | 2007
Olivier David; Stéphane Maisonneuve; Juan Xie
Tetrahedron | 2008
Stéphane Maisonneuve; Qiang Fang; Juan Xie
Dyes and Pigments | 2011
Yi-Bin Ruan; Stéphane Maisonneuve; Juan Xie
Photochemical and Photobiological Sciences | 2008
Vincent Souchon; Stéphane Maisonneuve; Olivier David; Isabelle Leray; Juan Xie; Bernard Valeur
Inorganic Chemistry | 2011
Ludivine Garcia; Stéphane Maisonneuve; Jennifer Oudinet-Sin Marcu; Régis Guillot; François Lambert; Juan Xie; Clotilde Policar
Photochemical and Photobiological Sciences | 2012
Karima Ouhenia-Ouadahi; Rémi Métivier; Stéphane Maisonneuve; Aurélie Jacquart; Juan Xie; Anne Léaustic; Pei Yu; Keitaro Nakatani
Synthesis | 2012
Hua Yi; Stéphane Maisonneuve; Juan Xie