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Dive into the research topics where Régis Réau is active.

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Featured researches published by Régis Réau.


Coordination Chemistry Reviews | 2003

Linear organic π-conjugated systems featuring the heavy Group 14 and 15 elements

Muriel Hissler; Philip W. Dyer; Régis Réau

Abstract An overview of the synthesis and properties of linear organic π-conjugated systems featuring Group 14 and 15 moieties is presented and comparisons made with their better-known hydrocarbon, and nitrogen- and sulfur-containing analogues. The major focus of this review is π-conjugated systems based on heteroles. The unique electronic structure and nature of siloles and phospholes is examined, highlighting the influence of both the ring substituents and the character of the heteroatom on their photophysical properties. The synthesis of a variety of Group 14 and 15 heterole building blocks suitable for the construction of π-conjugated systems is presented. The preparation and physical properties of poly- and oligo-(1,1-silole)s and -(2,5-silole)s, oligo-(2,5-phosphole)s and co-oligomers of silole and phosphole blocks with other electron-rich monomer units, all with extended π-conjugation, are discussed. A brief resume of linear π-conjugated materials that possess heavy Group 15 elements in the polymer backbone is also presented.


Chemistry: A European Journal | 2001

Phosphole‐Containing π‐Conjugated Systems: From Model Molecules to Polymer Films on Electrodes

Caroline M. Hay; Muriel Hissler; Cédric Fischmeister; Joëlle Rault-Berthelot; Loïc Toupet; László Nyulászi; Régis Réau

Two series of 2,5-dipyridyl- and 2,5-dithienylphosphole derivatives containing sigma3- or sigma4-P atoms were prepared, and their optical (UV/Vis absorption, fluorescence spectra) and electrochemical properties were systematically evaluated. These physical properties depend mainly on the natures of the 2,5-substituents and of the phosphorus moiety, and they revealed that these compounds contain extended pi-conjugated systems. Structure-property relationships were established on the basis of these experimental data and ab initio calculations on the parent molecules. The limited aromatic character and low-lying LUMO of the phosphole ring appear to be crucial for achieving a highly delocalised pi system. Electrooxidation of 2,5-dithienylphosphole derivatives affords electroactive films with low optical band gaps. As observed for the corresponding monomers, the optical and electrochemical properties of the polymers can be varied over a wide range by modifying the nature of the phosphorus moiety.


Journal of the American Chemical Society | 2009

Metal−Bis(helicene) Assemblies Incorporating π-Conjugated Phosphole-Azahelicene Ligands: Impacting Chiroptical Properties by Metal Variation

Sébastien Graule; Mark Rudolph; Nicolas Vanthuyne; Jochen Autschbach; Christian Roussel; Jeanne Crassous; Régis Réau

The synthesis of phosphole-modified aza[6]helicenes and the complexation of these pi-conjugated ditopic ligands with metallic ions are described. The chiroptical properties of these metal-bis(helicene) assemblies were experimentally evaluated and studied by first-principles theoretical calculations. The results show that the metal impacts the chiroptical properties of these complexes through electronic interactions with the chiral pi-conjugated ligands.


Angewandte Chemie | 2010

Metallahelicenes: Easily Accessible Helicene Derivatives with Large and Tunable Chiroptical Properties†

Lucie Norel; Mark Rudolph; Nicolas Vanthuyne; J. A. Gareth Williams; Christophe Lescop; Christian Roussel; Jochen Autschbach; Jeanne Crassous; Régis Réau

Enantiopure metallahelicenes have been prepared by cyclometalation of 2-pyridyl-substituted benzophenanthrenes followed by resolution using chiral HPLC. They are red phosphors at room temperature and their chiroptical properties can be modulated by oxidation of the metal center to the oxidation state IV.


Journal of the American Chemical Society | 2012

Dibenzophosphapentaphenes: Exploiting P Chemistry for Gap Fine-Tuning and Coordination-Driven Assembly of Planar Polycyclic Aromatic Hydrocarbons

Pierre-Antoine Bouit; Aude Escande; Rózsa Szűcs; Dénes Szieberth; Christophe Lescop; László Nyulászi; Muriel Hissler; Régis Réau

A synthetic route to planar P-modified polycylic aromatic hydrocarbons (PAHs) is described. The presence of a reactive σ(3),λ(3)-P moiety within the sp(2)-carbon scaffold allows the preparation of a new family of PAHs displaying tunable optical and redox properties. Their frontier molecular orbitals (MOs) are derived from the corresponding phosphole MOs and show extended conjugation with the entire π framework. The coordination ability of the P center allows the coordination-driven assembly of two molecular PAHs onto a Au(I) ion.


Organic Letters | 2013

Benzofuran-fused Phosphole: Synthesis, Electronic, and Electroluminescence Properties

Hui Chen; Wylliam Delaunay; Jing Li; Zuoyong Wang; Pierre-Antoine Bouit; Denis Tondelier; Bernard Geffroy; François Mathey; Zheng Duan; Régis Réau; Muriel Hissler

A synthetic route to novel benzofuran-fused phosphole derivatives 3-5 is described. These compounds showed optical and electrochemical properties that differ from their benzothiophene analog. Preliminary results show that 4 can be used as an emitter in OLEDs, illustrating the potential of these new compounds for opto-electronic applications.


Chemistry: A European Journal | 2010

Assembly of π‐Conjugated Phosphole Azahelicene Derivatives into Chiral Coordination Complexes: An Experimental and Theoretical Study

Sébastien Graule; Mark Rudolph; Wenting Shen; J. A. Gareth Williams; Christophe Lescop; Jochen Autschbach; Jeanne Crassous; Régis Réau

Aza[n]helicene phosphole derivatives have been prepared from aza[n]helicene diynes by the Fagan-Nugent route. Their photophysical properties (UV/Vis absorption and emission behavior) have been evaluated. Their behavior as P,N chelates towards coordination to Pd(II) and Cu(I) has been investigated: metal-bis(aza[n]helicene phosphole) assemblies are formed by a highly stereoselective coordination process, as demonstrated by X-ray crystallography. An aza[6]helicene phosphole bearing an enantiopure helicene part has been obtained, which allows the preparation of enantiopure Pd(II) and Cu(I) complexes with original topologies and high molar rotation (MR) and circular dichroism (CD). The structure-property relationship established from the experimental data has been studied in detail by theoretical studies (TDDFT calculations of UV/Vis, CD, and MR). Aza[n]helicene phosphole derivatives show pi conjugation extended over the entire molecule, and its influence on the MR of aza[6]helicene phosphole 5 c has been demonstrated. Finally, it has been shown that the nature of the metal (coordination geometry and electronic interaction) can have a great impact on the amplitude of the chiroptical properties in metal-bis(aza[n]helicene phosphole) assemblies.


Journal of the American Chemical Society | 2011

From Hetero- to Homochiral Bis(metallahelicene)s Based on a PtIII−PtIII Bonded Scaffold: Isomerization, Structure, and Chiroptical Properties

Emmanuel Anger; Mark Rudolph; Chengshuo Shen; Nicolas Vanthuyne; Loı̈c Toupet; Christian Roussel; Jochen Autschbach; Jeanne Crassous; Régis Réau

Hetero- and homochiral diastereomeric bis(metallahelicene)s have been synthesized. They possess a rare Pt(III)-Pt(III) scaffold bridged by benzoato ligands. It is shown that heterochiral (P,M)-bis(Pt(III)-[6]helicene) can isomerize into the homochiral (P,P)- and (M,M)-bis(Pt(III)-[6]helicene). A theoretical study shows a unique σ-π conjugation between the two π-helices and the σ-Pt(III)-Pt(III) scaffold that impacts the strong chiroptical properties.


Chemistry: A European Journal | 2011

Multifunctional and reactive enantiopure organometallic helicenes: tuning chiroptical properties by structural variations of mono- and bis(platinahelicene)s.

Emmanuel Anger; Mark Rudolph; Lucie Norel; Samia Zrig; Chengshuo Shen; Nicolas Vanthuyne; Loïc Toupet; J. A. Gareth Williams; Christian Roussel; Jochen Autschbach; Jeanne Crassous; Régis Réau

Acetylacetonato-platina[6]- and -platina[7]helicenes have been prepared from 2-pyridyl-substituted benzophenanthrene ligands by following a two-step cycloplatination reaction. The photophysical properties (UV-visible absorption and emission behavior) and chiroptical properties (circular dichroism and molar rotation) of the resolved enantiomers have been measured. These metallahelicenes constitute a novel family of easily accessible helicene derivatives that exhibit large and tuneable chiroptical properties that can be rationalized theoretically and compared to the parent [6]- and [7]carbohelicenes. Furthermore, they are red phosphors at room temperature and their large chiroptical properties can be modulated by oxidation of the metal center to Pt(IV). Hetero- and homochiral diastereomeric bis(metallahelicene)s that possess a rare Pt(III)-Pt(III) scaffold bridged by benzoato ligands have also been prepared. It is shown that the heterochiral (P,M)-bis(Pt(III)-[6]helicene) 9a(1) can isomerize into the homochiral (P,P)- and (M,M)-bis(Pt(III)-[6]helicene) 9a(2). Spectral assignments and an analysis of the optical rotation of these systems were made with the help of time-dependent density functional theory. The calculations highlight the contributions of the metal centers to the chiroptical properties. For 9a(1) and 9a(2), σ-π conjugation between the helicenes and the Pt-Pt moiety may contribute strongly to the optical rotation and electronic circular dichroism.


Chemical Science | 2014

Straightforward access to mono- and bis-cycloplatinated helicenes displaying circularly polarized phosphorescence by using crystallization resolution methods

Chengshuo Shen; Emmanuel Anger; Monika Srebro; Nicolas Vanthuyne; Kirandeep K. Deol; Truman D. Jefferson; Gilles Muller; J. A. Gareth Williams; Loïc Toupet; Christian Roussel; Jochen Autschbach; Régis Réau; Jeanne Crassous

Enantiopure mono-cycloplatinated-[8]helicene and bis-cycloplatinated-[6]helicene derivatives were prepared through column chromatography combined with crystallization of diastereomeric complexes using a chiral ancillary sulfoxide ligand. The UV-visible spectra, circular dichroism, molar rotations, and (circularly polarized) luminescence activity of these new helical complexes have been examined in detail and analysed with the help of first-principles quantum-chemical calculations.

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Muriel Hissler

École Normale Supérieure

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Guy Bertrand

University of California

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Françoise Dahan

Centre national de la recherche scientifique

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Nicolas Vanthuyne

Université Paul Cézanne Aix-Marseille III

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Jochen Autschbach

State University of New York System

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