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Open AccessJournal ArticleDOI

Synthesis and Reactivity of Electron-Deficient 3-Vinylchromones

Vyacheslav Ya. Sosnovskikh
- Vol. 05, Iss: 03, pp 255-277
TLDR
The literature data on the methods of synthesis and reactivity of electron-deficient 3-vinylchromones containing electron-withdrawing groups at the exo-cyclic double bond are summarized and systematized for the first time in this paper.
Abstract
The literature data on the methods of synthesis and reactivity of electron-deficient 3-vinylchromones containing electron-withdrawing groups at the exo-cyclic double bond are summarized and systematized for the first time. The main methods for obtaining these compounds are Knoevenagel condensation, Wittig reaction, and palladium-catalyzed cross-couplings. The most important chemical properties are transformations under the action of mono- and dinucleophiles, ambiphilic cyclizations, and cycloaddition reactions. The cross-conjugated and polyelectrophilic dienone system in 3-vinylchromones provides their high reactivity and makes these compounds valuable building blocks for the preparation of more complex heterocyclic systems. Chemical transformations of 3-vinylchromones usually begin with an attack of the C-2 atom and are accompanied by the opening of the pyrone ring followed by recyclization, in which the carbonyl group of chromone, an exo-double bond or a substituent at it can take part. The mechanisms of the reactions are discussed, the conditions for their implementation and the yields of the resulting products are indicated. This review focuses on an analysis and generalization of the knowledge that has accumulated on the chemistry of electron-deficient 3-vinylchromones, mostly over the past 15 years.

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Asymmetric Organocatalyzed Cascade Reactions─Merging the pseudo-Halogen and Halogen Effect with Dienamine Catalysis.

TL;DR: In this paper , the combination of asymmetric organocatalysis with the (pseudo)-halogen effect enables the formation of chiral norcarane scaffolds in high yields and selectivities.
Book ChapterDOI

Recent advances in the synthesis of 4H-chromen-4-ones (2012 − 2021)

TL;DR: A comprehensive survey of the methodologies developed for the synthesis of 2,3-unsubstituted, 2- and 3-substitized and 2, 3-disubstitized 4 H -chromen-4-one derivatives can be found in this article .
References
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Journal ArticleDOI

Organophosphorus chemistry 221. reaction of 3-formyl-4-chromone with ter- and penta-valent phosphorus compounds

TL;DR: In this paper, trialkyl phosphites and dialkyl phosphonates attack the aldehydic carbonyl-carbon of 3-formyl-4-chromone, yielding the corresponding α-alkoxy (4), and α-hydroxy-phosphonates (6), respectively.
Journal ArticleDOI

Re-cyclization of 3-(E)-methyl 3-(4-oxo-4H-chromen-3-yl)acrylate with amines and their potential mechanism

TL;DR: In this article, the synthesis of 2-pyridone derivatives from different substituted amines and various 3-(E)-methyl 3-(4-oxo-4H-chromen-3-yl)acrylate derivatives was proposed and described.
Journal ArticleDOI

Direct construction of xanthene and benzophenone derivatives via Brønsted acid controlled Diels-Alder reaction of 3-vinylchromones and arynes

TL;DR: A Bronsted acid controlled Diels-Alder reaction of 3-vinylchromones with arynes has been developed in this paper, where different kinds and amounts of acid, 9-aryl-9H-xanthen-9-ols or ortho-hydroxybenzophenones could be controllably furnished in good yields in an atom and step-economic manner.
Journal ArticleDOI

Domino reactions of 2-methyl chromones containing an electron withdrawing group with chromone-fused dienes

TL;DR: Domino reactions of 2-methyl substituted chromones containing an electron withdrawing group at the 3-position with chromone-fused dienes synthesized a diverse range of benzo[a]xanthones and complicated chromone derivatives.
Journal Article

Synthesis, structural determination, and biological activity of new 7-hydroxy-3-pyrazolyl-4H-chromen- 4-ones and their o-\beta-D-glucosides

TL;DR: In this article, a convenient route to synthesize some new medicinally important 7-hydroxy-3-pyrazolyl chromones (3ai) was described, and the structures of these newly synthesized o-glucosides were established by IR, NMR, mass spectra, elemental analysis, and chemical analysis.
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