Mathieu Rouen
École Normale Supérieure
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Publication
Featured researches published by Mathieu Rouen.
Angewandte Chemie | 2013
Pierre Queval; Claire Jahier; Mathieu Rouen; Isabelle Artur; Jean-Christophe Legeay; Laura Falivene; Loïc Toupet; Christophe Crévisy; Luigi Cavallo; Olivier Baslé; Marc Mauduit
A low-cost, modular, and easily scalable multicomponent procedure affording access in good yields and excellent selectivity (up to 93%) to a wide range of (a)chiral unsymmetrical 1-aryl-3-cycloalkyl-imidazolium salts is disclosed. Electronic and steric properties of the corresponding unsymmetrical unsaturated N-heterocyclic carbene (U2-NHC) ligands were evaluated and evidenced strong electron donor ability, high steric discrimination, and modular steric demand.
Chemistry: A European Journal | 2012
Etienne Borré; Mathieu Rouen; Isabelle Laurent; Magaly Magrez; Frédéric Caijo; Christophe Crévisy; Wladimir Solodenko; Loïc Toupet; René Frankfurter; Carla Vogt; Andreas Kirschning; Marc Mauduit
In this study, a new pyridinium-tagged Ru complex was designed and anchored onto sulfonated silica, thereby forming a robust and highly active supported olefin-metathesis pre-catalyst for applications under batch and continuous-flow conditions. The involvement of an oxazine-benzylidene ligand allowed the reactivity of the formed Ru pre-catalyst to be efficiently controlled through both steric and electronic activation. The oxazine scaffold facilitated the introduction of the pyridinium tag, thereby affording the corresponding cationic pre-catalyst in good yield. Excellent activities in ring-closing (RCM), cross (CM), and enyne metathesis were observed with only 0.5 mol % loading of the pre-catalyst. When this powerful pre-catalyst was immobilized onto a silica-based cationic-exchange resin, a versatile catalytically active material for batch reactions was generated that also served as fixed-bed material for flow reactors. This system could be reused at 1 mol % loading to afford metathesis products in high purity with very low ruthenium contamination under batch conditions (below 5 ppm). Scavenging procedures for both batch and flow processes were conducted, which led to a lowering of the ruthenium content to as little as one tenth of the original values.
Chemistry: A European Journal | 2015
Claire Jahier‐Diallo; Marie S. T. Morin; Pierre Queval; Mathieu Rouen; Isabelle Artur; Pierre Querard; Loïc Toupet; Christophe Crévisy; Olivier Baslé; Marc Mauduit
A multicomponent strategy was applied to the synthesis of chiral bidentate unsaturated hydroxyalkyl- and carboxyalkyl-N-heterocyclic carbene (NHC) precursors. The newly developed low-cost chiral ligands derived from amino alcohols and amino acids were evaluated in copper-catalyzed asymmetric conjugated addition and asymmetric allylic alkylation, which afforded the desired tertiary and quaternary carbon stereocenters with excellent regio- and enantioselectivities (up to 99:1 e.r.).
Dalton Transactions | 2014
Mathieu Rouen; Etienne Borré; Laura Falivene; Loïc Toupet; Mikaël Berthod; Luigi Cavallo; Hélène Olivier-Bourbigou; Marc Mauduit
Air-stable Ru-indenylidene and Hoveyda-type complexes bearing new unsymmetrical unsaturated N-heterocyclic carbene (U2-NHC) ligands combining a mesityl unit and a flexible cycloalkyl moiety as N-substituents were synthesised. Structural features, chemical stabilities and catalytic profiles in olefin metathesis of this new library of cycloalkyl-based U2-NHC Ru complexes were studied and compared with their unsymmetrical saturated NHC-Ru homologues as well as a set of commercially available Ru-catalysts bearing either symmetrical SIMes or IMes NHC ligands.
Chemistry: A European Journal | 2018
Mathieu Rouen; Pauline Chaumont; Gabriella Barozzino-Consiglio; Jacques Maddaluno; Anne Harrison-Marchand
A methodology consisting in carrying out enantioselective nucleophilic 1,2-additions (ee values up to 97 %) from cheap, easily accessible, and never described before, chiral lithium amido zincates is presented. These multicomponent reactants auto-assemble when mixing, in a 1:1 ratio, a homoleptic diorganozinc (R2 Zn) with a chiral lithium amide (CLA). The latter, obtained after a single reductive amination, plays the role of the chiral inductor and is fully recoverable thanks to a simple acid-base wash, allowing being recycled and re-use without loss of stereochemical information.
ACS Catalysis | 2013
David J. Nelson; Pierre Queval; Mathieu Rouen; Magaly Magrez; Loïc Toupet; Frédéric Caijo; Etienne Borré; Isabelle Laurent; Christophe Crévisy; Olivier Baslé; Marc Mauduit; Jonathan M. Percy
ACS Catalysis | 2016
Mathieu Rouen; Pierre Queval; Etienne Borré; Laura Falivene; Albert Poater; Mikael Berthod; Francois Hugues; Luigi Cavallo; Olivier Baslé; Hélène Olivier-Bourbigou; Marc Mauduit
Chemistry: A European Journal | 2014
Mathieu Rouen; Pierre Queval; Laura Falivene; Jessica Allard; Loïc Toupet; Christophe Crévisy; Frédéric Caijo; Olivier Baslé; Luigi Cavallo; Marc Mauduit
Olefin Metathesis: Theory and Practice | 2014
Pierre Queval; Mathieu Rouen; Annie-Claude Gaumont; Isabelle Dez; Olivier Baslé and; Marc Mauduit
Organometallics | 2018
Adrien Dumas; Daniel S. Müller; Idriss Curbet; Loïc Toupet; Mathieu Rouen; Olivier Baslé; Marc Mauduit