A series of chiral *Flu-NHC-gold(I) complexes, where *Flu-NHC is an N-heterocyclic carbene (imidazolin-2-ylidene or benzimidazolin-2-ylidene) bearing a chiral 9-alkyl-9-fluorenyl N-substituent and a 2,6-diisopropylphenyl or benzyl N'-substituent, were straightforwardly prepared in few steps from readily available 2,6-diisopropylamine, imidazole or benzimidazole. The chirality of the N-substituent lies in the presence of a chiral alcoholic alkyl chain on the fluorenyl, which results from the opening of commercially available chiral styrene oxide, yielding to a 2-hydroxy-2-phenylethyl or a 2-hydroxy-1-phenylethyl group. Four [AuCl(*Flu-NHC)] complexes were tested as precatalysts in an enantioselective cycloisomerization of a 1,6-enyne. Notably, the best inductions were observed with the benzimidazolin-2-ylidene derivative bearing a 2-hydroxy-1-phenylethyl group on the fluorenyl ring, showing that a constrained rotation around the N-C bond and a chiral center in α position of the fluorenyl ring are determining factors. Interestingly, a strong improvement of the induction with up to 72 % ee was observed using AgOTf as activator. The presence of a hydrogen bond between the hydroxyl group and OTf in the in situ generated active cationic gold(I) species probably stiffens its structure. This type of ligand-counteranion interaction represents a novel strategy for optimizing chirality transfer in asymmetric gold(I) catalysis.
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http://dx.doi.org/10.1002/chem.202404446 | DOI Listing |
J Am Chem Soc
March 2025
School of Chemistry and Chemical Engineering, State Key Laboratory of Bio-based Fiber Materials, Zhejiang Sci-Tech University, Hangzhou 310018, China.
The 1-dihydrobenzazepine skeleton has emerged as a privileged structural motif in bioactive molecules. However, due to a lack of asymmetric methodology, access to chiral 1-dihydrobenzazepines has remained limited. Herein, we report the first intermolecular asymmetric cycloisomerization of benzo-fused enynes for the synthesis of chiral 1-dihydrobenzazepines via dirhodium catalysis.
View Article and Find Full Text PDFChemistry
February 2025
Catalyse Organométallique, Synthèse Organique et Santé, Institut de Chimie, UMR 7177 CNRS, Université de Strasbourg, 4 rue Blaise Pascal, 67070, Strasbourg, France.
A series of chiral *Flu-NHC-gold(I) complexes, where *Flu-NHC is an N-heterocyclic carbene (imidazolin-2-ylidene or benzimidazolin-2-ylidene) bearing a chiral 9-alkyl-9-fluorenyl N-substituent and a 2,6-diisopropylphenyl or benzyl N'-substituent, were straightforwardly prepared in few steps from readily available 2,6-diisopropylamine, imidazole or benzimidazole. The chirality of the N-substituent lies in the presence of a chiral alcoholic alkyl chain on the fluorenyl, which results from the opening of commercially available chiral styrene oxide, yielding to a 2-hydroxy-2-phenylethyl or a 2-hydroxy-1-phenylethyl group. Four [AuCl(*Flu-NHC)] complexes were tested as precatalysts in an enantioselective cycloisomerization of a 1,6-enyne.
View Article and Find Full Text PDFAcc Chem Res
January 2025
School of Chemistry and Chemical Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, China.
ConspectusFunctionalization of alkynes is an established cornerstone of organic synthesis. While numerous transition metals exhibit promising activities in the transformations of alkynes via π-insertion or oxidative cyclometalation, Lewis π-acids offer a different approach. By coordinating with alkynes through π-bonding, Lewis π-acids facilitate nucleophilic addition, leading to the formation of alkenyl metal species.
View Article and Find Full Text PDFOrg Lett
November 2024
Université Paris-Saclay, Centre National de la Recherche Scientifique (CNRS), Institut de Chimie des Substances Naturelles, UPR 2301, 91198 Gif-sur-Yvette, France.
The tethered counterion-directed catalysis (TCDC) strategy enables the Au(I)-catalyzed highly enantioselective synthesis of bicyclic furan derivatives via a reaction sequence combining the cycloisomerization of 2-alkynyl enones and the addition of nucleophiles. A large range of oxygenated nucleophiles, such as water, alcohols, carboxylic acids, and peroxides, have successfully been used as nucleophiles, delivering the chiral furane derivatives in high enantioselectivities (mostly above 90% enantiomeric excess). The CPAphosAuCl complexes were used with catalytic loadings as low as 0.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
November 2024
Department of Chemistry and Biochemistry, University of California Santa Barbara, Santa Barbara, CA 93117, USA.
Cyclopentene rings possessing a chiral quaternary center are important structural motifs found in various natural products. In this work, we disclose expedient and efficient access to this class of synthetically valuable structures via highly enantioselective desymmetrization of prochiral propargylic alcohols. The efficient chirality induction in this asymmetric gold catalysis is achieved via two-point bindings between a gold catalyst featuring a bifunctional phosphine ligand and the substrate homopropargylic alcohol moiety-an H-bonding interaction between the substrate HO group and a ligand phosphine oxide moiety and the gold-alkyne complexation.
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