Catalyst-free nucleophilic substitution of hydrogen in quinoline rings by acylethynylpyrroles: stereoselective synthesis of 2-(E-2-acylethenylpyrrolyl)quinolines
Kseniya V. Belyaeva,
Lina P. Nikitina,
Ludmila A. Oparina
et al.
Abstract:A new type of SNHAr reaction in the quinoline core under the action of available acylethynylpyrroles proceeds without halogenated reagents and any catalysts to stereoselectively afford 2-(E-2-acylethenylpyrrolyl)quinolines with a yield up to 78%.
“…One of the promising routes to address this challenge is the nucleophilic substitution of hydrogen in a heteroaromatic ring, which is actively developing now. 29–33 An advantageous feature of this reaction is that it does not require preliminary functionalization, including halogenation, of the heterocyclic substrate that leads to environmentally dangerous waste.…”
Pyridines undergo a facile SNHAr phosphinylation with H-phosphinates under catalyst- and solvent-free conditions (50–55 °C) in the presence of benzoylphenylacetylene to afford 4-phosphinylpyridines in up to 68% yield.
“…One of the promising routes to address this challenge is the nucleophilic substitution of hydrogen in a heteroaromatic ring, which is actively developing now. 29–33 An advantageous feature of this reaction is that it does not require preliminary functionalization, including halogenation, of the heterocyclic substrate that leads to environmentally dangerous waste.…”
Pyridines undergo a facile SNHAr phosphinylation with H-phosphinates under catalyst- and solvent-free conditions (50–55 °C) in the presence of benzoylphenylacetylene to afford 4-phosphinylpyridines in up to 68% yield.
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