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Latest Paper:
J Am Chem Soc. 2012 Apr 3;:
22471833
Department of Chemistry, University of Rochester , Rochester, New York 14627, United States.
Highly functionalized cyclopentenones can be generated by a chemoselective copper(II)-mediated Nazarov/Wagner-Meerwein rearrangement sequence of divinyl ketones. A detailed investigation of this sequence is described including a study of substrate scope and limitations. After the initial 4π electrocyclization, this reaction proceeds via two different sequential [1,2]-shifts, with selectivity that depends upon either migratory ability or the steric bulkiness of the substituents at C1 and C5. This methodology allows the creation of vicinal stereogenic centers, including adjacent quaternary centers. This sequence can also be achieved by using a catalytic amount of copper(II) in combination with NaBAr(4)(f), a weak Lewis acid. During the study of the scope of the reaction, a partial or complete E/Z isomerization of the enone moiety was observed in some cases prior to the cyclization, which resulted in a mixture of diastereomeric products. Use of a Cu(II)-bisoxazoline complex prevented the isomerization, allowing high diastereoselectivity to be obtained in all substrate types. In addition, the reaction sequence was studied by DFT computations at the UB3LYP/6-31G(d,p) level, which are consistent with the proposed sequences observed, including E/Z isomerizations and chemoselective Wagner-Meerwein shifts.
Chemistry. 2012 Mar 1;:
22383395
Pierre Garcia,
Yannick Evanno,
Pascal George,
Mireille Sevrin,
Gino Ricci,
Max Malacria,
Corinne Aubert,
Vincent Gandon
UPMC, Univ Paris 06, IPCM 7201, 4 Place Jussieu, 75252 Paris Cedex 05 (France), Fax:(+33) 144-27-73-60.
An in-depth study of the cobalt-catalyzed [2+2+2] cycloaddition between yne-ynamides and nitriles to afford aminopyridines has been carried out. About 30 nitriles exhibiting a broad range of steric demand and electronic properties have been evaluated, some of which open new perspectives in metal-catalyzed arene formation. In particular, the use of [CpCo(CO)(dmfu)](dmfu=dimethyl fumarate) as a precatalyst made possible the incorporation of electron-deficient nitriles into the pyridine core. Modification of the substitution pattern at the yne-ynamide allows the regioselectivity to be switched toward 3- or 4-aminopyridines. Application of this synthetic methodology to the construction of the aminopyridone framework using a yne-ynamide and an isocyanate was also briefly examined. DFT computations suggest that 3-aminopyridines are formed by formal [4+2] cycloaddition between the nitrile and the intermediate cobaltacyclopentadiene, whereas 4-aminopyridines arise from an insertion pathway.
Marion Barbazanges,
Mylène Augé,
Jamal Moussa,
Hani Amouri,
Corinne Aubert,
Christophe Desmarets,
Louis Fensterbank,
Vincent Gandon,
Max Malacria,
Cyril Ollivier
UPMC Paris 06, IPCM (UMR CNRS 7201), 4 Place Jussieu, 75252 Paris cedex 05, France.
Enantioenriched bicyclo[4.1.0]hept-2-enes were synthesized by Ir(I)-catalyzed carbocyclization of 1,6-enynes. No chiral ligands were used, CO and PPh(3) were the only ligands bound to iridium. Instead, the stereochemical information was localized on the counterion of the catalyst, generated in situ by reaction of Vaska's complex (trans-[IrCl(CO)(PPh(3))(2)]) with a chiral silver phosphate. Enantiomeric excesses up to 93% were obtained when this catalytic mixture was used.(31)P NMR and IR spectroscopy suggest that formation of the trans-[Ir(CO)(PPh(3))(2)](+) moiety occurs by chlorine abstraction. Moreover, density functional theory calculations support a 6-endo-dig cyclization promoted by this cationic moiety. The chiral phosphate anion (O-P*) controls the enantioselectivity through formation of a loose ion pair with the metal center and establishes a C-H···O-P* hydrogen bond with the substrate. This is a rare example of asymmetric counterion-directed transition-metal catalysis and represents the first application of such a strategy to a C-C bond-forming reaction.
Chemistry. 2011 Sep 27;:
21954114
Ludovic Donati,
Pascale Leproux,
Elise Prost,
Sylvie Michel,
François Tillequin,
Vincent Gandon,
François-Hugues Porée
Laboratoire de Pharmacognosie UMR CNRS 8638, Université Paris Descartes, 4 Avenue de l'Observatoire, 75006 Paris (France), Fax:(+33) 140-46-96-58.
The domino reaction of o-bromobenzamides 1 a-m in the presence of K(2) CO(3) and the [PdCl(2)(PPh(3))(2)] catalyst granted a selective access to phenanthridinones 2 or to the new 1-carboxamide phenanthridinones 3 depending on the solvent, DMF or 1,4-dioxane, respectively. Investigations of the reaction parameters provided the first example of a direct correlation between the base dissociation and the solvent polarity on the selectivity observed. Moreover, mechanistic studies (NMR spectroscopy and ESI-MS monitoring) allowed us to characterize Pd(II) palladacycle 4 and biaryl species as common intermediates for these two domino processes. On that basis, C(sp(2))C(sp(2)) bond formation is envisaged by generation of a Pd(IV) complex after oxidative addition of 1 into Pd(II) palladacycle 4, a rationale that is supported by DFT calculations. A general catalytic cycle is proposed to account for these observations.
Department of Chemistry, University of Rochester, Rochester, NY 14627 (USA).
Zhenhua Gu,
Gregory B Boursalian,
Vincent Gandon,
Robin Padilla,
Hao Shen,
Tatiana V Timofeeva,
Paul Tongwa,
K Peter C Vollhardt,
Andrey A Yakovenko
Department of Chemistry, University of California at Berkeley, Berkeley, CA 94720-1460 (USA).
UPMC Paris 06, IPCM (UMR CNRS 7201), 4 place Jussieu, 75252 Paris cedex 05, France.
Org Lett. 2011 Jun 3;13 (11):2952-5
21534621
Cit:1
Pierre Garcia,
Youssef Harrak,
Lisa Diab,
Pierre Cordier,
Cyril Ollivier,
Vincent Gandon,
Max Malacria,
Louis Fensterbank,
Corinne Aubert
UPMC Université Paris 06, Sorbonne Universités, Institut Parisien de Chimie Moléculaire (UMR CNRS 7201), Paris, France.
A variety of allenynamides can undergo cycloisomerization reactions in the presence of silver triflate thus leading to the formation of N-containing heterocycles incorporating cross-conjugated trienes. Access to new dienic 4-piperidinone and azepane motifs was achieved. An extension to one-pot tandem sequences involving silver-catalyzed cycloisomerization/Diels-Alder reaction was also examined.
Org Lett. 2011 Apr 15;13 (8):2030-3
21413688
Cit:1
Pierre Garcia,
Yannick Evanno,
Pascal George,
Mireille Sevrin,
Gino Ricci,
Max Malacria,
Corinne Aubert,
Vincent Gandon
UPMC, Université Paris 06, IPCM 7201, 4 Place Jussieu, 75252 Paris Cedex 05, France.
Bimolecular cobalt-catalyzed [2 + 2 + 2] cycloadditions between yne-ynamides and nitriles afford bicyclic 3- or 4-aminopyridines in up to 100% yield. The high regioselectivity observed depends on the substitution pattern at the starting ynamide. Aminopyridines bearing TMS and Ts groups are efficiently deprotected in an orthogonal fashion.
Top Curr Chem. 2011 ;302 :157-82
21290214
UPMC Univ Paris 06, Institut Parisien de Chimie Moléculaire (UMR CNRS 7201), C. 229, 4 Place Jussieu, 75005, Paris, France.
This review provides an insight into the activation of allenes by gold complexes toward nucleophilic attack. The various possible geometries of allene-gold species, from η(2)-allenes to η(1) allylic cations, are described. From the data collected in the literature, it is clear that all of these intermediates have been met during computational analysis of reaction mechanisms. While some retain the stereochemical information of the starting optically active allenes, others may lose it by planarization. To shed light on that matter, the factors governing axial-to-center chirality transfer are described. Some concepts are illustrated by selected examples of catalytic transformations, the mechanisms of which have been studied computationally.
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