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1.
Chem Commun (Camb) ; 60(24): 3339-3342, 2024 Mar 19.
Artigo em Inglês | MEDLINE | ID: mdl-38440813

RESUMO

Guaiazulene-stabilized cations reacted with metal enolates affording carbonyl compounds with an azulene moiety. Metal enolates generated by asymmetric conjugate addition of organometallic reagents led to enantioenriched products. Additionally, guaiazulene-substituted cations efficiently react with silyl enol ethers. DFT calculations allowed estimation of the electrophilicities of the carbocations. Reaction progress was monitored by a decrease in the reactant's Vis-light absorption and an increase in the product's anti-Kasha emission.

2.
Beilstein J Org Chem ; 19: 881-888, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37346500

RESUMO

We present here a stereoselective tandem reaction based on the asymmetric conjugate addition of dialkylzinc reagents to unsaturated acylimidazoles followed by trapping of the intermediate zinc enolate with carbocations. The use of a chiral NHC ligand provides chiral zinc enolates in high enantiomeric purities. These enolates are reacted with highly electrophilic onium compounds to afford densely substituted acylimidazoles. DFT calculations helped to understand the reactivity of the zinc enolates derived from acylimidazoles and allowed their comparison with metal enolates obtained by other conjugate addition reactions.

3.
J Org Chem ; 84(11): 7312-7319, 2019 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-31042391

RESUMO

An efficient diastereoselective synthesis of planar chiral ferrocenes via Pd(II)-catalyzed direct C-H activation with arylboronic acids or pinacol esters is presented. The reaction was performed under mild conditions using commercially available achiral or chiral amino acids as ligands. The best results were obtained with ( R)-Boc-alanine, which yielded products in 27-83% yield with diastereoselectivities ranging from 5:1 to 20:1 (11 examples). Diastereoisomeric products can also be obtained using ( S)-Boc-alanine as a ligand. Stereoinduction of the reaction was explained by density functional theory calculations of possible transition states.

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