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Reference EntryDOI

The [3 + 2] Nitrone–Olefin Cycloaddition Reaction

Pat N. Confalone, +1 more
- 15 Oct 2004 - 
- pp 1-173
TLDR
In this paper, the authors provide a thorough understanding of the nitrone-olefin cycloaddition reaction and illustrate its power by describing some significant applications to complex synthetic problems.
Abstract
Early researchers studying the condensation product of carbonyl compounds with N-substituted hydroxylamines elected to coin the term “nitrone” as a combination of the words “nitrogen” and “ketone.” This was done to emphasize the parallel between this newly discovered functionality and the already rich chemistry of the carbonyl group. For example, nitrones are capable of reacting with carbanions of various types, a consequence of the iminium species embedded in the nitrone that renders the functionality susceptible to nucleophilic attack. Thus C-phenyl-N-methylnitrone undergoes a Reformatsky reaction with ethyl bromoacetate in complete analogy with benzaldehyde. The intermediate zinc alkoxide cyclizes to 2-methyl-3-phenylisoxazolidin-5-one, a type of compound that can also be prepared by the related nucleophilic addition of dialkyl malonates to nitrones. This chapter deals with a unique property of nitrones not shared by the corresponding carbonyl compounds, namely, a marked ability to undergo a [3 + 2] cycloaddition reaction in the presence of a dipolarophile. The reactions of nitrones with substituted olefins, both intermolecular and intramolecular are addressed. This process yields isoxazolidines directly, affording products related to those obtained in the Reformatsky reaction but arising by a different reaction mode. The intent of the review presented in this chapter is to provide a thorough understanding of the nitrone–olefin [3 + 2] cycloaddition reaction and to illustrate its power by describing some significant applications to complex synthetic problems. Various aspects have been reviewed. This documentation of the nitrone–olefin cycloaddition reaction begins with the preparation and stability of the nitrone component and is followed by mechanistic considerations. A presentation of the dipolarophile syntheses is beyond the scope of this chapter; however, the tabular survey provides leading references to specific examples. The important concepts of regio- and stereo-selectivities are introduced next. Since the general rules of regiochemistry that apply in the intermolecular version of the reaction are often reversed in the intramolecular version, the latter are dealt with separately. Finally, important applications to the total synthesis of natural products are presented. The versatile utility of the nitrone–olefin cycloaddition reaction in the synthesis of natural products has been the major driving force in the development of this long-neglected chemistry. An in-depth understanding of the key transformations of the isoxazolidines afforded by the reaction will place this chemistry firmly within the arsenal of organic reactions. Keywords: cycloaddition reactions; [3 + 2] reaction; nitrone; olefins; nitrone stability; mechanism; regioselectivity; intermolecular reaction; intramolecular reaction; C-alkenylnitrones; N-alkenylnitrones; natural products; alkaloids; biotin; aldehyde-derived nitrones; ketone-derived nitrones; endocyclic nitrones; exocyclic nitrones; amino glycosides; adaline; nitrogen-free systems; experimental procedures

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Citations
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Journal ArticleDOI

The isoxazolidines: a new class of corrosion inhibitors of mild steel in acidic medium

TL;DR: In this article, all the new isoxazolidines were tested for corrosion inhibition of mild steel in 1 M HCl at 60 °C by gravimetric and electrochemical methods.
Journal ArticleDOI

Design and synthesis of a novel class of inhibitors for mild steel corrosion in acidic and carbon dioxide-saturated saline media

TL;DR: P-(9-(Methylisoxazolidin-5-yl)nonyloxy)benzaldehyde I, prepared using a cycloaddition protocol, was elaborated into its cinnamaldehyde derivative II which upon quarternization with propargyl chloride afforded III bearing an interesting blend of structural traits suitable for imparting inhibition of mild steel corrosion.
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A Molecular Electron Density Theory Study of the Reactivity and Selectivities in [3 + 2] Cycloaddition Reactions of C,N-Dialkyl Nitrones with Ethylene Derivatives.

TL;DR: The present MEDT study provides an explanation for the unexpected ortho regioselectivity experimentally found in the 32CA reactions involving weak electrophilic ethylenes such as ethyl acrylate and acrylonitrile.
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Catalytic Reductive Functionalization of Tertiary Amides using Vaska’s Complex: Synthesis of Complex Tertiary Amine Building Blocks and Natural Products

TL;DR: The tertiary amide is a ubiquitous functional group and plays an irreplaceable role in medicinal chemistry as discussed by the authors, and its robust nature has meant that selective manipulation of this motif remaine...
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Water exclusion reaction in aqueous media: nitrone formation and cycloaddition in a single pot.

TL;DR: The formation of nitrone in aqueous media using surfactant and subsequent cycloaddition in the same pot, a new example of green chemistry, is reported and the control of regioselectivity favors the formation of trans-5-substituted isoxazolidine.
References
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Journal ArticleDOI

1,3-Dipolar Cycloadditions. Past and Future†

TL;DR: In contrast to the very large number of special methods applicable to syntheses in the heterocyclic series, relatively few general methods are available as discussed by the authors, and the 1,3-dipolar addition offers a remarkably wide range of utility in the synthesis of five-membered heterocycles.