Ligand-Controlled Copper(I)-Catalyzed Cross-Coupling of Secondary and Primary Alcohols to α‑Alkylated Ketones, Pyridines, and Quinolines

One hexanuclear Cu­(I) cluster of 4,6-dimethylpyrimidine-2-thiolate efficiently catalyzes the dehydrogenative cross-coupling of secondary and primary alcohols to α-alkylated ketones with high selectivity. This transformation proceeds through a one-pot sequence of dehydrogenation of alcohols, condens...

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Veröffentlicht in:Organic letters 2018-02, Vol.20 (3), p.608-611
Hauptverfasser: Tan, Da-Wei, Li, Hong-Xi, Zhu, Da-Liang, Li, Hai-Yan, Young, David James, Yao, Jian-Lin, Lang, Jian-Ping
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Sprache:eng
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Zusammenfassung:One hexanuclear Cu­(I) cluster of 4,6-dimethylpyrimidine-2-thiolate efficiently catalyzes the dehydrogenative cross-coupling of secondary and primary alcohols to α-alkylated ketones with high selectivity. This transformation proceeds through a one-pot sequence of dehydrogenation of alcohols, condensation of aldehydes and ketones, hydrogenation of the resulting α,β-unsaturated ketones, and dehydrogenation of the α-alkylated alcohols to generate α-alkylated ketones. This catalytic system also displays high activity for the annulation reaction of secondary alcohols with γ-amino- and 2-aminobenzyl alcohols to yield pyridines and quinolines, respectively.
ISSN:1523-7060
1523-7052
DOI:10.1021/acs.orglett.7b03726