Transition metal-free hydrogenative coupling of nitroarenes mediated with dihydropyridine: chemoselective formation of aromatic azoxy, azo, hydrazine and phenazine
Безметаллическое гидрогенативное сочетание нитроаренов, опосредованное дигидропиридином: хемоселективное образование ароматических азоксисоединений, азосоединений, гидразинов и феназинов
2025-01-01
SCID: 54.1/rfc3k34k
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HEHHantzsch 1,4-dihydropyridinechemoselective formation of azoxy, azo, hydrazine, phenazinefree-radical mechanismtransition metal-free hydrogenative coupling
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Abstract (AI)
Due to the diversity of the compounds containing dinitrogen bonds, chemoselectivity is a key issue to be addressed for the hydrogenative coupling of nitroarenes. A system consisting of Hantzsch 1,4-dihydropyridine (HEH) and a base was developed as a transition metal-free reductant for the hydrogenative coupling of nitroarenes to provide aromatic azoxy, azo and hydrazine. Under optimized conditions, the reaction of 2-fluoronitroarene afforded phenazines. Chemoselectivity for the formation of these dinitrogen compounds was effectively regulated by the choice of the base and the amount of reductant employed. A plausible free-radical mechanism for the hydrogenative coupling of nitroarenes was proposed, wherein the combination of HEH and NaH acted as a synergistic reductant.
Key Findings
1
A plausible free-radical mechanism is proposed for the hydrogenative coupling mediated by HEH and base.
2
A transition metal-free reductant system using Hantzsch 1,4-dihydropyridine (HEH) plus a base enables hydrogenative coupling of nitroarenes to form aromatic azoxy, azo, and hydrazine products.
3
Chemoselectivity among azoxy, azo, hydrazine, and phenazine products can be effectively controlled by choice of base and amount of HEH reductant.
4
The HEH/NaH combination acts synergistically as the reductant in the reaction system.
5
Under optimized conditions, hydrogenative coupling of 2-fluoronitroarene with HEH produced phenazines.
Research Object
Hydrogenative coupling reactions of nitroarenes mediated by Hantzsch 1,4-dihydropyridine (HEH) and base
Research Subject
Chemoselective formation of aromatic dinitrogen compounds (azoxy, azo, hydrazine, and phenazine) and the control of selectivity by base choice and reductant amount, via a transition metal-free HEH/base reductant system and proposed free-radical mechanism
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2025-01-01
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