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Featured researches published by Sébastien Blanchard.


Inorganic Chemistry | 2011

Addition of N-Heterocyclic Carbenes to a Ruthenium(VI) Nitrido Polyoxometalate: a New Route to Cyclic Guanidines

Claire Besson; Jean-Hugues Mirebeau; Séverine Renaudineau; Sylvain Roland; Sébastien Blanchard; Hervé Vezin; Christine Courillon; Anna Proust

The scope of N-atom transfer from the electrophilic ruthenium(VI) nitrido containing polyoxometalate [PW(11)O(39)Ru(VI)N](4-) has been extended to the N-heterocyclic carbene {CH(2)(Mes)N}(2)C and the coupling product {CH(2)(Mes)N}(2)CNH(2)(+) characterized by (1)H NMR and high-resolution mass spectrometry. Because guanidines display many fields of applications ranging from biology to supramolecular chemistry, this could afford an original route to the synthesis of cyclic guanidines. This also enlarges the potential of nitrido complexes in the synthesis of heterocycles, mainly illustrated in the literature through the formation of aziridines through N-atom transfer to alkenes. In the course of the reaction, the ruthenium(III)-containing polyoxometallic intermediate [PW(11)O(39)Ru(III){NC{N(Mes)CH(2)}(2)}](5-) has been thoroughly characterized by continuous-wave and pulsed electron paramagnetic resonance, which nicely confirms the presence of the organic moiety on the polyoxometallic framework, Ru K-edge X-ray absorption near-edge structure, and electrochemistry.


Chemistry: A European Journal | 2014

Tandem CH Activation/Arylation Catalyzed by Low-Valent Iron Complexes with Bisiminopyridine Ligands

Elise Salanouve; Ghania Bouzemame; Sébastien Blanchard; Etienne Derat; Marine Desage-El Murr; Louis Fensterbank

Tandem C-H activation/arylation between unactivated arenes and aryl halides catalyzed by iron complexes that bear redox-active non-innocent bisiminopyridine ligands is reported. Similar reactions catalyzed by first-row transition metals have been shown to involve substrate-based aryl radicals, whereas our catalytic system likely involves ligand-centered radicals. Preliminary mechanistic investigations based on spectroscopic and reactivity studies, in conjunction with DFT calculations, led us to propose that the reaction could proceed through an inner-sphere C-H activation pathway, which is rarely observed in the case of iron complexes. This bielectronic noble-metal-like behavior could be sustained by the redox-active non-innocent bisiminopyridine ligands.


Chemistry: A European Journal | 2015

A Simple Synthesis of Triangular All‐Metal Aromatics Allowing Access to Isolobal All‐Metal Heteroaromatics

Yanlan Wang; Pierre-Alexandre Deyris; Tatiana Caneque; Florent Blanchard; Yanling Li; Franca Bigi; Raimondo Maggi; Sébastien Blanchard; Giovanni Maestri; Max Malacria

A simple synthetic method allows the one-pot assembly of C3 -symmetric, 44-core-valence-electron, triangular Pd or Pt clusters and their heterobimetallic mixed Pd/Pt analogues. These mixed metal complexes are the first examples of stable triangular all-metal heteroaromatics. In contrast to traditional heteroaromatic molecules formed combining main-group elements, they actually retain structural and electronic features of their homonuclear analogues.


Angewandte Chemie | 2016

C−N Bond Formation from a Masked High‐Valent Copper Complex Stabilized by Redox Non‐Innocent Ligands

Jérémy Jacquet; Pauline Chaumont; Geoffrey Gontard; Maylis Orio; Hervé Vezin; Sébastien Blanchard; Marine Desage-El Murr; Louis Fensterbank

The reactivity of a stable copper(II) complex bearing fully oxidized iminobenzoquinone redox ligands towards nucleophiles is described. In sharp contrast with its genuine low-valent counterpart bearing reduced ligands, this complex performs high-yielding C-N bond formations. Mechanistic studies suggest that this behavior could stem from a mechanism akin to reductive elimination occurring at the metal center but facilitated by the ligand: it is proposed that a masked high oxidation state of the metal can be stabilized as a lower copper(II) oxidation state by the redox ligands without forfeiting its ability to behave as a high-valent copper(III) center. These observations are substantiated by a combination of advanced EPR spectroscopy techniques with DFT studies. This work sheds light on the potential of redox ligands as promoters of unusual reactivities at metal centers and illustrates the concept of masked high-valent metallic species.


Angewandte Chemie | 2014

Solid‐State Hierarchical Cyclodextrin‐Based Supramolecular Polymer Constructed by Primary, Secondary, and Tertiary Azido Interactions

Mickaël Ménand; Ségolène Adam de Beaumais; Lise-Marie Chamoreau; Etienne Derat; Sébastien Blanchard; Yongmin Zhang; Laurent Bouteiller; Matthieu Sollogoub

The crystallization of a di-azido-α-cyclodextrin revealed a polymeric self-assembly involving a variety of azido-type interactions. The crystal arrangement relies on the cooperativity of a primary azido inclusion, a secondary azido-azido interaction involving an unprecedented distribution of canonical forms, and a tertiary azido-groove interaction. The second azido group brings in a major contribution to the supramolecular structure illustrating the benefit of a difunctionalization for the generation of hierarchy.


Chemistry: A European Journal | 2017

Circumventing Intrinsic Metal Reactivity: Radical Generation with Redox-Active Ligands

Jérémy Jacquet; Khaled Cheaib; Yufeng Ren; Hervé Vezin; Maylis Orio; Sébastien Blanchard; Louis Fensterbank; Marine Desage-El Murr

Nickel complexes have gained sustained attention as efficient catalysts in cross-coupling reactions and co-catalysts in dual systems due to their ability to react with radical species. Central to this reactivity is nickels propensity to shuttle through several accessible redox states from Ni0 to NiIV . Here, we report the catalytic generation of trifluoromethyl radicals from a nickel complex bearing redox-active iminosemiquinone ligands. This unprecedented reactivity is enabled through ligand-based oxidation performing electron transfer to an electrophilic CF3+ source while the nickel oxidation state is preserved. Additionally, extension of this reactivity to a copper complex bearing a single redox equivalent is reported, thus providing a unified reactivity scheme. These results open new pathways in radical chemistry with redox-active ligands.


Journal of Inorganic Biochemistry | 2016

Enzymatic oxidation of ansa-ferrocifen leads to strong and selective thioredoxin reductase inhibition in vitro

Valeria Scalcon; Anna Citta; Alessandra Folda; Alberto Bindoli; Michèle Salmain; Ilaria Ciofini; Sébastien Blanchard; José de Jésús Cázares-Marinero; Yong Wang; Pascal Pigeon; Gérard Jaouen; Anne Vessières; Maria Pia Rigobello

This paper reports the inhibitory effect on the cytosolic thioredoxin reductase (TrxR1) in vitro by the ansa-ferrocifen derivative (ansa-FcdiOH, 1). We found that 1 decreased only slightly enzyme activity (IC50=8μM), while 1*, the species generated by enzymatic oxidation by the HRP (horseradish peroxidase)/H2O2 mixture, strongly inhibited TrxR1 (IC50=0.15μM). At the same concentrations, neither 1 nor 1* had effect on glutathione reductase (GR). The most potent TrxR1 inhibitor did not appear to be the corresponding quinone methide as it was the case for ferrocifens of the acyclic series, or the stabilized carbocation as in the osmocifen series, but rather the quinone methide radical. This hypothesis was confirmed by ab-initio calculations of the species generated by oxidation of 1 and by EPR spectroscopy. BIAM (biotin-conjugated iodoacetamide) assay showed that 1* targeted both cysteine and selenocysteine of the C-terminal redox center of TrxR1.


Journal of the American Chemical Society | 2018

Modeling the Oxygen Vacancy at a Molecular Vanadium(III) Silica-Supported Catalyst

Teng Zhang; Albert Solé-Daura; Sarah Hostachy; Sébastien Blanchard; Céline Paris; Yanling Li; Jorge J. Carbó; Josep M. Poblet; Anna Proust; Geoffroy Guillemot

Here we report on the use of a silanol-decorated polyoxotungstate, [SbW9O33( tBuSiOH)3]3- (1), as a molecular support to describe the coordination of a vanadium atom at a single-site on silica surfaces. By reacting [V(Mes)3·thf] (Mes = 2,4,6-trimethylphenyl) with 1 in tetrahydrofuran, the vanadium(III) derivative [SbW9O33( tBuSiO)3V(thf)]3- (2) was obtained. Compound 2 displays the paramagnetic behavior expected for a d2-VIII high spin complex (SQUID measurements) with a triplet electronic ground state (ca. 30 kcal·mol-1 more stable than the singlet, from DFT calculations). Compound 2 proves to be a reliable model for reduced isolated-vanadium atom dispersed on silica surfaces [(≡Si-O)3VIII(OH2)], an intermediate that is often proposed in a Mars-van Krevelen type mechanism for partial oxidation of light alcohols. Oxidation of 2 under air produced the oxo-derivative [SbW9O33( tBuSiO)3VO]3- (3). In compound 2, the d2-electrons are localized in degenerated d(V) orbitals, whereas in the electronically analogous bireduced-[SbW9O33( tBuSiO)3VO]5-, 3·(2e), one electron is localized on d(V) orbital and the second one is delocalized on the polyoxotungstic framework, leading to a unique case of a bireduced heteropolyanion derivative with completely decoupled d1-V(IV) and d1-W(V). Our body of experimental results (EPR, magnetic measurements, spectroelectrochemical studies, Raman spectroscopy) and theoretical studies highlights (i) the role of the apical ligand coordination, i.e., thf (σ-donor) vs oxo (π-donor), in destabilizing or stabilizing the d(V) orbitals relative to the d(W) orbitals, and (ii) a geometrical distortion of the O3VO entity that causes a splitting of the degenerated orbitals and the stabilization of one d(V) orbital in the bireduced compound 3·(2e).


European Journal of Inorganic Chemistry | 2012

Non-Innocent Ligands: New Opportunities in Iron Catalysis

Sébastien Blanchard; Etienne Derat; Marine Desage-El Murr; Louis Fensterbank; Max Malacria; Virginie Mouriès-Mansuy


Journal of the American Chemical Society | 2007

Synthesis and Characterization of the Keggin-Type Ruthenium-Nitrido Derivative [PW11O39{RuN}]4- and Evidence of Its Electrophilic Reactivity

Vanina Lahootun; Claire Besson; Richard Villanneau; Francoise Villain; Lise-Marie Chamoreau; Kamal Boubekeur; Sébastien Blanchard; René Thouvenot; Anna Proust

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Marine Desage-El Murr

Centre national de la recherche scientifique

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Maylis Orio

Aix-Marseille University

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Eric Rivière

Université Paris-Saclay

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