Monflier, Eric, chimiste
Eric Monflier
VIAF ID: 198040871 (Personal)
Permalink: http://viaf.org/viaf/198040871
Preferred Forms
- 100 0 _ ‡a Eric Monflier
- 100 1 _ ‡a Monflier, Eric, ‡c chimiste
4xx's: Alternate Name Forms (2)
Works
Title | Sources |
---|---|
Amphiphilic photo-isomerisable phosphanes for aqueous organometallic catalysis. | |
Apports des cyclodextrines en catalyse hétérogène : études de l'hydrodéchloration de COVs chlorés et des réactions de Suzuki et de Heck catalysés par de palladium sur charbon actif en milieu aqueux | |
Aqueous biphasic hydroformylation in the presence of cyclodextrins mixtures: evidence of a positive synergistic effect | |
Behavior of molecular and nanoparticular systems containing cyclodextrius on the blood brain barrier : application to the delivery of drugs toward the brain. | |
Carbonylation of halogened derivatives : implementation of benzylpyruvic acid and new catalytic process for synthesis of trichloroacetyl chloride. | |
Catalyse en phase aqueuse supportée et catalyse par transfert de phase inverse : deux nouvelles approches pour l'hydroformylation des esters [alpha, bêta]-insaturés et des oléfines grasses | |
Catalytically active nanoparticles stabilized by host–guest inclusion complexes in water | |
Des complexes de cyclodextrine-(Carbène N-Hétérocycliques)-métaux pour catalyse dépendante de la cavité. | |
Conception and shaping of new materials synthesized from natural macromolecules. | |
Conception et mise en forme de nouveaux matériaux à partir de macromolécules naturelles | |
Contribution of cyclodextrins fot the hydrothermal synthesis of MOFS of the UIO-66 family. | |
Contributions of cyclodextrins in the reactions catalysed by transition metals in biphasic medium. | |
Cooperativity in Aqueous Organometallic Catalysis: Contribution of Cyclodextrin-Substituted Polymers | |
Cyclodextrins as growth controlling agents for enhancing the catalytic activity of PVP-stabilized Ru(0) nanoparticles | |
Élaboration de systèmes catalytiques hétérogènes à base d'oxyde de niobium phosphaté et de cyclodextrines pour la production de molécules furaniques biosourcées | |
Élaboration d'un vecteur nanoparticulaire liposomial par assemblage supramoléculaire d'un dérivé adamantyle et de cyclodextrine modifiée : application à la barrière hémato-encéphalique | |
Etude Structure/Activité de nouveaux vecteurs membranaires à base de Cyclodextrines Amphiphiles | |
Fine tuning of sulfoalkylated cyclodextrin structures to improve their mass-transfer properties in an aqueous biphasic hydroformylation reaction | |
Hemp coproducts for the treatment of metals from the surface treatment industry. | |
Hydroformylation of Alkenes in a Planetary Ball Mill: from Additive-Controlled Reactivity to Supramolecular Control of Regioselectivity | |
Hydroformylation réductrice d'huiles végétales : vers une stratégie de recyclage et une meilleure compréhension du système catalytique [rhodium/amine] | |
Interaction of water-soluble triphenylphosphines with β-cyclodextrin: a quantum chemistry study | |
Investigating the effect of randomly methylated β-cyclodextrin/block copolymer molar ratio on the template-directed preparation of mesoporous alumina with tailored porosity | |
De la condensation inorganique aux hybrides fonctionnalisés : structures, propriétés électrochimiques et réactivité supramoléculaire de nouveaux polyoxométallates à base de vanadium | |
Large cavity cyclodextrin-based macrocyclic ligands : synthesis, coordination and catalytic properties | |
Mesoporous RuO2/TiO2 composites prepared by cyclodextrin-assisted colloidal self-assembly: towards efficient catalysts for the hydrogenation of methyl oleate | |
Mise au point d'une méthodologie de caractérisation analytique et structurale des complexes de la β-cyclodextrine : application à des molécules aromatiques | |
Mise en évidence de complexes d'inclusion cyclodextrines/phosphines hydrosolubles et application à la réaction d'hydroformylation an milieu biphasique | |
Molecular Recognition Between a Water-Soluble Organometallic Complex and a ?-Cyclodextrin: First Example of Second-Sphere Coordination Adducts Possessing a Catalytic Activity | |
Multiscale Structure of Starches Grafted with Hydrophobic Groups: A New Analytical Strategy | |
New copper-based catalytic systems for the Huisgen cycloaddition : synthesis and reactivity studies of supramolecular photoactivable catalysts for “click” chemistry. | |
New heterogenized catalytic systems for the synthesis of isosorbide esters by hydroesterification. | |
New Lipidyl-Cyclodextrins Obtained by Ring Opening of Methyl Oleate Epoxide Using Ball Milling | |
New phosphane based on a beta-cyclodextrin, exhibiting a solvent-tunable conformation, and its catalytic properties. | |
New water-soluble systems "phosphane | |
Nonconventional Three-Component Hierarchical Host-Guest Assembly Based on Mo-Blue Ring-Shaped Giant Anion, γ-Cyclodextrin, and Dawson-type Polyoxometalate. | |
Nouveaux systèmes hydrosolubles "phosphine / β-cyclodextrine modifiée" pour la catalyse organométallique biphasique | |
Nouveaux transporteurs et ligands supramoléculaires pour la catalyse organométallique aqueuse | |
OléoSodioSuccinyl-Cyclodextrines : synthèse et applications en catalyse aqueuse de cyclodextrines amphiphiles obtenues par estérification à l'aide de dérivés oléiques maléinisés | |
Organometallic synthesis of water-soluble ruthenium nanoparticles in the presence of sulfonated diphosphines and cyclodextrins | |
Palladium-catalyzed hydroesterification of olefins with isosorbide in standard and Brønsted acidic ionic liquids | |
Peracetylated β-cyclodextrin as solubilizer of arylphosphines in supercritical carbon dioxide | |
Pickering Emulsions Based on Supramolecular Hydrogels: Application to Higher Olefins’ Hydroformylation | |
Polyoxometalate, Cationic Cluster, and γ-Cyclodextrin: From Primary Interactions to Supramolecular Hybrid Materials. | |
A property-matched water-soluble analogue of the benchmark ligand PPh3. | |
Reductive hydroformylation of vegetable oils : towards a recycling strategy and a better understanding of the catalytic system [rhodium/amine]. | |
Remediation technologies using cyclodextrins: an overview | |
Rhodium complexes non-covalently bound to cyclodextrins: novel water-soluble supramolecular catalysts for the biphasic hydroformylation of higher olefins | |
Robust Mesoporous CoMo/γ-Al2O3 Catalysts from Cyclodextrin-Based Supramolecular Assemblies for Hydrothermal Processing of Microalgae: Effect of the Preparation Method. | |
Selective Secondary Face Modification of Cyclodextrins by Mechanosynthesis. | |
Solubilisation of chlorinated solvents by cyclodextrin derivatives: a study by static headspace gas chromatography and molecular modelling. | |
Structure/Activity Relationship in new amphiphilic cyclodextrins as nanovectors. | |
Sulfonated Xantphos Ligand and Methylated Cyclodextrin: A Winning Combination for Rhodium-Catalyzed Hydroformylation of Higher Olefins in Aqueous Medium | |
Superstructures with cyclodextrins: chemistry and applications III. | |
Supramolecular shuttle and protective agent: a multiple role of methylated cyclodextrins in the chemoselective hydrogenation of benzene derivatives with ruthenium nanoparticles | |
Synthèse de nouvelles phosphines hydrosolubles par sulfonation et par clivage réducteur de sels de phosphonium pour l'hydroformylation en milieu biphasique aqueux | |
Synthèses et caractérisations de nanoparticules métalliques stabilisées en phase aqueuse par des polymères en présence de cyclodextrines : hydrogénation catalytique de composés issus de la biomasse | |
Synthesis and characterization of a new photoinduced switchable β-cyclodextrin dimer. | |
Synthesis and hydroformylation evaluation of Fréchet-type organometallic dendrons with N,O-salicylaldimine Rh(i) complexes at the focal point | |
Synthesis of 1,4:3,6-Dianhydrohexitols Diesters from the Palladium-Catalyzed Hydroesterification Reaction | |
Thermodynamic insight into the origin of the inclusion of monosulfonated isomers of triphenylphosphine into the beta-cyclodextrin cavity | |
Thermoresponsive self-assembled cyclodextrin-end-decorated PNIPAM for aqueous catalysis | |
Transition Metal Complexes Coordinated by Water Soluble Phosphane Ligands: How Cyclodextrins Can Alter the Coordination Sphere? | |
Understanding the Role of Cyclodextrins in the Self-Assembly, Crystallinity, and Porosity of Titania Nanostructures | |
Unexpected Multifunctional Effects of Methylated Cyclodextrins in a Palladium Charcoal-Catalyzed Suzuki−Miyaura Reaction | |
Uses of activated carbon in processes of Volatile Organic compounds adsorption and processes of catalysis in water. | |
Using click chemistry to access mono- and ditopic β-cyclodextrin hosts substituted by chiral amino acids | |
Utilisations de charbons actifs dans des procédés d'adsorption de Composés Organiques Volatils et des procédés de catalyse dans l'eau. | |
Vers la catalyse d'hydroformylation biphasique au rhodium supportée sur des polymères cœur-coquille amphiphiles | |
Vers la synthèse directe d'amines chirales via des réactions d'hydroaminométhylation asymétrique catalysées par le rhodium | |
β-Cyclodextrins Decrease Cholesterol Release and ABC-Associated Transporter Expression in Smooth Muscle Cells and Aortic Endothelial Cells | |
β-Cyclodextrins grafted with chiral amino acids: A promising supramolecular stabilizer of nanoparticles for asymmetric hydrogenation? | |
β-Cyclodextrins modified by alkyl and poly(ethylene oxide) chains: A novel class of mass transfer additives for aqueous organometallic catalysis |