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Dive into the research topics where Pascal Retailleau is active.

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Featured researches published by Pascal Retailleau.


Journal of the American Chemical Society | 2009

Chiral Brønsted Acid-Catalyzed Enantioselective Three-Component Povarov Reaction

Hua Liu; Guillaume Dagousset; Géraldine Masson; Pascal Retailleau; Jieping Zhu

The three-component Povarov reaction of aldehydes (2), anilines (3), and benzyl N-vinylcarbamate 4 in the presence of 0.1 equiv of chiral phosphoric acid 5 afforded cis-2,4-disubstituted tetrahydroquinolines (1) in good yields and excellent enantiomeric excesses. The shortest synthesis of torcetrapib reported to date, which features this key three-component reaction, is documented.


Journal of the American Chemical Society | 2008

2-Phospha[3]ferrocenophanes with Planar Chirality : Synthesis and Use in Enantioselective Organocatalytic [3 + 2] Cyclizations

Arnaud Voituriez; Armen Panossian; Nicolas Fleury‐Bregeot; Pascal Retailleau; Angela Marinetti

Planar chiral phosphines displaying a new ferrocenophane scaffold have been prepared via a stereoselective approach. The P-cyclohexyl substituted phosphine affords high levels of asymmetric induction in the organocatalytic [3 + 2] annulation reaction between allenes and electron-poor olefins.


Journal of the American Chemical Society | 2012

High-Performance Solution-Processed Solar Cells and Ambipolar Behavior in Organic Field-Effect Transistors with Thienyl-BODIPY Scaffoldings

Thomas Bura; Nicolas Leclerc; Sadiara Fall; Patrick Lévêque; Thomas Heiser; Pascal Retailleau; Sandra Rihn; Antoine Mirloup; Raymond Ziessel

Green-absorbing dipyrromethene dyes engineered from bis-vinyl-thienyl modules are planar molecules, exhibiting strong absorption in the 713-724 nm range and displaying comparable electron and hole mobilities in thin films (maximum value 1 × 10(-3) cm(2)/(V·s)). Bulk heterojunction solar cells assembled with these dyes and a fullerene derivative (PC(61)BM) at a low ratio give a power conversion efficiency as high as 4.7%, with short-circuit current values of 14.2 mA/cm(2), open-circuit voltage of 0.7 V, and a broad external quantum efficiency ranging from 350 to 920 nm with a maximum value of 60%.


Chemistry: A European Journal | 2010

An Organocatalytic [3+2] Cyclisation Strategy for the Highly Enantioselective Synthesis of Spirooxindoles

Arnaud Voituriez; Nathalie Pinto; Mathilde Neel; Pascal Retailleau; Angela Marinetti

Spirooxindole cores are featured in a number of natural and unnatural biologically active compounds, as well as in drug candidates. Among them, pyrrolidin-3,3’-oxindole units are the most widespread, however, spirocyclic oxindoles with carbocyclic fiveor six-membered rings are not uncommon either. Specifically, 3-spirocyclopentane-2-oxindole scaffolds are embodied in natural alkaloid derivatives such as marcfortines, citrinadins cyclopiamines, notoamides and versicolamides. They also find applications in the area of medicinal chemistry.


Journal of the American Chemical Society | 2012

Highly enantioselective electrophilic α-bromination of enecarbamates: chiral phosphoric acid and calcium phosphate salt catalysts.

Aurélien Alix; Claudia Lalli; Pascal Retailleau; Géraldine Masson

Metal-free chiral phosphoric acids and chiral calcium phosphates both catalyze highly enantio- and diastereoselective electrophilic α-bromination of enecarbamates to provide an atom-economical synthesis of enantioenriched vicinal haloamines. Either enantiomer can be formed in good yield with excellent diastereo- and enantioselectivity simply by switching the catalyst from a phosphoric acid to its calcium salt.


Journal of Medicinal Chemistry | 2010

N-Heterocyclic Carbene-Amine Pt(II) Complexes, a New Chemical Space for the Development of Platinum-Based Anticancer Drugs

Myriem Skander; Pascal Retailleau; Bernard Bourrié; Laurent Schio; Patrick Mailliet; Angela Marinetti

N-Heterocyclic carbene (NHC) platinum complexes have been highlighted as a promising and original platform for building new cytotoxic drugs of the cisplatin series. Mixed NHC-amine Pt(II) complexes have been prepared via a facile and modular two step sequence leading to trans-configured square planar species. They have been characterized by spectroscopic methods and X-ray diffraction studies. Their efficiency against both cisplatin sensitive (CEM and H460) and resistant (A2780/DDP, CH1/DDP, and SK-OV-3) cell lines has been demonstrated by in vitro experiments.


Organic Letters | 2011

Facile Synthesis of Highly Fluorescent Boranil Complexes

Sébastien Azizi; Gilles Ulrich; Pascal Retailleau; Raymond Ziessel

Complexation of a large variety of Anils (aniline-imines) with boron(III) precursors provides stable Boranils, some of which have been structurally characterized. Analysis of their optical properties reveals that the fluorescence stems from an intraligand charge transfer (ILCT) state with the best quantum yields reaching 90%. Chemistry on the Boranils allows grafting of photoactive modules acting as energy antennae for borondipyrromethene (Bodipy) and subphtalocyanine (SubPc) fluorophores.


Chemistry: A European Journal | 2009

Solid‐State Gas Sensors Developed from Functional Difluoroboradiazaindacene Dyes

Raymond Ziessel; Gilles Ulrich; Anthony Harriman; Mohammed A. H. Alamiry; Beverly Stewart; Pascal Retailleau

This article describes the synthesis and characterization of several new difluoroboradiazaindacene (BODIPY) dyes functionalized at the central 8-position by a phenyliodo, phenylheptynoate or phenylheptynoic fragment and at the 3- or 3/5-position(s) by 4-dimethylaminophenylstyryl residue(s). Single-crystal structural determinations confirm the planarity of the dyes, while the absorption and fluorescence spectroscopic properties are highly sensitive to the state of protonation (or alkylation) of the terminal anilino donor group(s). Reversible color tuning from green to blue for absorption and from colorless (i.e., near-IR region) to red for fluorescence is obtained on successive addition of acid and base. The difunctionalized derivative is especially interesting in this respect and shows two well-resolved pK(a) values of 5.10 and 3.04 in acetonitrile. Addition of the first proton causes only small spectral changes and deactivates the molecule towards addition of the second proton. It is this latter step that accommodates the large change in absorption and emission properties, due to the reversible extinction of the intramolecular charge-transfer character inherent to this type of dye. The main focus of the work is the covalent anchoring of the dyes to inert, porous polyacrylate beads so as to form a solid-state sensor suitable for analysis of gases or flowing liquids. The final material is highly stable--its performance is undiminished after more than one year--and fully reversible over many cycles. The sensitivity is such that reactions can be followed by the naked eye and the detection limit is about 600 ppb for HCl and about 80 ppb for ammonia. Trace amounts of diphosgene can be detected, as can alkylating agents. The sensing action is indiscriminate and also operates when the beads are dispersed in aqueous media.


Biophysical Journal | 1997

No salting-in of lysozyme chloride observed at low ionic strength over a large range of pH.

Pascal Retailleau; Madeleine Riès-Kautt; Arnaud Ducruix

Solubility of lysozyme chloride was determined in the absence of added salt and in the presence of 0.05-1.2 M NaCl, starting from isoionic lysozyme, which was then brought to pH values from 9 to 3 by addition of HCl. The main observation is the absence of a salting-in region whatever the pH studied. This is explained by a predominant electrostatic screening of the positively charged protein and/or by adsorption of chloride ions by the protein. The solubility increases with the protein net charge at low ionic strength, but the reverse is observed at high ionic strength. The solubility of lysozyme chloride seems to become independent of ionic strength at pH approximately 9.5, which is interpreted as a shift of the isoionic pH (10.8) to an isoelectric pH due to chloride binding. The crystallization at very low ionic strength, where lysozyme crystallizes at supersaturation values as low as 1.1, amplifies the effect of pH on protein solubility. Understanding the effect of the net charge and of ionic strength on protein-protein interactions is valuable not only for protein crystal growth but more generally also for the formation of protein-protein or protein-ligand complexes.


Angewandte Chemie | 2014

Helicenes with Embedded Phosphole Units in Enantioselective Gold Catalysis

Keihann Yavari; Paul Aillard; Yang Zhang; Frédérick Nuter; Pascal Retailleau; Arnaud Voituriez; Angela Marinetti

This paper discloses the first uses of phosphahelicenes as chiral ligands in transition-metal catalysis. Unlike all known helical phosphines used so far in catalysis, the phosphorus function of phosphahelicenes is embedded in the helical structure itself. This crucial structural feature originates unprecedented catalytic behaviors and efficiency. An appropriate design and fine tuning allowed both high catalytic activity and good enantiomeric excesses to be attained in the gold promoted cycloisomerizations of N-tethered 1,6-enynes and dien-ynes.

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Raymond Ziessel

École Normale Supérieure

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Angela Marinetti

Institut de Chimie des Substances Naturelles

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Gilles Ulrich

École Normale Supérieure

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Robert H. Dodd

Institut de Chimie des Substances Naturelles

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Philippe Dauban

Institut de Chimie des Substances Naturelles

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Mohamed Gaye

Cheikh Anta Diop University

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Marc Litaudon

Institut de Chimie des Substances Naturelles

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Géraldine Masson

Institut de Chimie des Substances Naturelles

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Siméon Arseniyadis

Institut de Chimie des Substances Naturelles

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