Synthesis of Spirocyclic 5,6‐Dihydro‐4H‐1,2‐oxazines via [4+2] Cycloaddition of Methylideneimidazolones With Nitroso Alkenes Generated Under Diffusion Mixing Conditions

ABSTRACT A simple and effective method for the generation of nitroso alkenes from α‐halo oximes using the technique of diffusion mixing with a volatile reagent (DIPEA) had been proposed. The formed nitroso alkenes add regioselectively to 5‐methylidenehydantoins with the formation of spiro‐5,6‐dihydro‐4H‐1,2‐oxazine‐hydantoins; the similar reaction with 5‐methylidene‐2‐thio‐ or 2‐selenohydantoin as dienophiles resulted in the same spiro‐dihydroisoxazine‐imidazolone with desulfurization or deselenation of the substrates.

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Journal
ChemistrySelect
Published
2026-09-30
DOI
https://doi.org/10.1002/slct.74667
Primary Topic
Synthesis and Reactions of Organic Compounds
Type
article
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Synthesis of Spirocyclic 5,6‐Dihydro‐4H‐1,2‐oxazines via [4+2] Cycloaddition of Methylideneimidazolones With Nitroso Alkenes Generated Under Diffusion Mixing Conditions

Dmitry E. Shybanov, Elena Kimovna Beloglazkina, Nikolai Vasil'evich Zyk, Eugene V. Babaev et al.
ChemistrySelect
Synthesis and Reactions of Organic Compounds
article

Synthesis of Spirocyclic 5,6‐Dihydro‐4H‐1,2‐oxazines via [4+2] Cycloaddition of Methylideneimidazolones With Nitroso Alkenes Generated Under Diffusion Mixing Conditions

Dmitry E. Shybanov, Elena Kimovna Beloglazkina, Nikolai Vasil'evich Zyk, Eugene V. Babaev, Artem Goncharov, Maxim E. Kukushkin
article en

Abstract

ABSTRACT A simple and effective method for the generation of nitroso alkenes from α‐halo oximes using the technique of diffusion mixing with a volatile reagent (DIPEA) had been proposed. The formed nitroso alkenes add regioselectively to 5‐methylidenehydantoins with the formation of spiro‐5,6‐dihydro‐4H‐1,2‐oxazine‐hydantoins; the similar reaction with 5‐methylidene‐2‐thio‐ or 2‐selenohydantoin as dienophiles resulted in the same spiro‐dihydroisoxazine‐imidazolone with desulfurization or deselenation of the substrates.

ChemistrySelectVol. 11(37)
Lomonosov Moscow State University (RU)
Clean water and sanitation
Openalex Percentile: Top 22%
Synthesis and Reactions of Organic Compounds
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