Molecular Design of a Chiral Brønsted Acid with Two Different Acidic Sites: Regio‑, Diastereo‑, and Enantioselective Hetero-Diels–Alder Reaction of Azopyridine­carboxylate with Amidodienes Catalyzed by Chiral Carboxylic Acid–Monophosphoric Acid

A chiral Brønsted acid containing two different acidic sites, chiral carboxylic acid–monophosphoric acid 1a, was designed to be a new and effective concept in catalytic asymmetric hetero-Diels–Alder reactions of azopyridine­carboxylate with amidodienes. The multipoint hydrogen-bonding interactions a...

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Veröffentlicht in:Journal of the American Chemical Society 2016-09, Vol.138 (35), p.11353-11359
Hauptverfasser: Momiyama, Norie, Tabuse, Hideaki, Noda, Hirofumi, Yamanaka, Masahiro, Fujinami, Takeshi, Yamanishi, Katsunori, Izumiseki, Atsuto, Funayama, Kosuke, Egawa, Fuyuki, Okada, Shino, Adachi, Hiroaki, Terada, Masahiro
Format: Artikel
Sprache:eng
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Zusammenfassung:A chiral Brønsted acid containing two different acidic sites, chiral carboxylic acid–monophosphoric acid 1a, was designed to be a new and effective concept in catalytic asymmetric hetero-Diels–Alder reactions of azopyridine­carboxylate with amidodienes. The multipoint hydrogen-bonding interactions among the carboxylic acid, monophosphoric acid, azopyridine­carboxylate, and amidodiene achieved high catalytic and chiral efficiency, producing substituted 1,2,3,6-tetrahydro­pyridazines with excellent stereocontrol in a single step. This constitutes the first example of regio-, diastereo-, and enantioselective azo-hetero-Diels–Alder reactions by chiral Brønsted acid catalysis.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.6b07150