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The Mitsunobu Reaction

David L. Hughes
- 15 Oct 2004 - 
- pp 335-656
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TLDR
In this paper, the authors present a review of the literature on the MAD/triphenylphosphine redox system, with emphasis on the literature between 1981 and 1988.
Abstract
Alkyl and aryl phosphites and phosphines react with compounds having weak heteroatom–heteroatom bonds, such as SS, OO, etc., and with azo compounds to form reactive phosphonium salts. These phosphonium salts in turn promote “redox” condensation reactions with compounds having active hydrogens. The condensation reaction of alcohols using the redox couple of a triaryl- or trialkylphosphine and a dialkyl azodicarboxylate has become known as the Mitsunobu reaction, based on his pioneering work in the late 1960s. The overall reaction is summarized, wherein the alcohol (R1OH) and acidic compound (H–Nu) are condensed to form product (R1–Nu), while triphenylphosphine is oxidized to triphenylphosphine oxide and the azodicarboxylate is reduced to the hydrazine. Although the typical redox combination is diethyl azodicarboxylate (DEAD) and triphenylphosphine, many other combinations have found selected use. The reaction is generally limited to primary and secondary alcohols, although tertiary alcohols react in a few intramolecular and intermolecular reactions. For secondary alcohols the reaction usually proceeds with clean inversion of stereochemistry. The acidic component of the reaction generally has an aqueous pKa < 15, with intramolecular reactions providing the exceptions. Examples of H–Nu include oxygen nucleophiles such as carboxylic acids and phenols; nitrogen nucleophiles such as imides, hydroxamates, and heterocycles; sulfur nucleophiles such as thiols and thioamides; and carbon nucleophiles such as β-ketoesters. Major reviews of the Mitsunobu reaction were published in 1981 by Mitsunobu and in 1983 by Castro. The former review concentrated on reactions using DEAD/triphenylphosphine, while the latter review focused on reactions in which halogens replaced the hydroxy group using reagents such as triphenylphosphine/carbon tetrachloride, triphenyl phosphite/iodomethane, and triphenylphosphine/N-halosuccinimide. Reactions involving the DEAD/triphenylphosphine redox system are the principal subject of this chapter, with emphasis on the literature between 1981 and 1988. Keywords: Mitsunobu reaction; adduct formation; alcohol activation; SN2 reaction; mechanisms; carbon–oxygen bond; carbon–nitrogen bond; carbon–sulfur bond; carbon–halogen bond; carbon–carbon bond; ambident nucleophiles; dehydration; alkenes; method comparison; ester formation; lactone formation; akyl aryl ether; epoxides; dialkyl ethers; enol ethers; dialkyl ethers; imides; azides; experimental procedures; scope; limitations

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References
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Journal ArticleDOI

The design and synthesis of macrobicyclic hosts featuring convergent functional groups.

TL;DR: In this paper, a series of macrobicyclic structures in which carboxylate derivatives converge on a central cavity have been described. But their ability to complex amino acids in aqueous solutions is discussed.
Journal ArticleDOI

Biosynthese von Naturstoffen mit einer P ? C‐Bindung, II. Hydroxylierung von deuterierten (2‐Aminoethyl)phosphonsäuren zu (2‐Amino‐1‐hydroxyethyl)phosphonsäure in Acanthamoeba castellanii (Neff)

TL;DR: In this article, castellanii et al. describe the biosynthesis of OH-AEP by direct hydroxylation of AEP with no isotope effect, and the oxygen of the hydroxy group is derived from the air.
Journal ArticleDOI

Synthesis of site specifically deuterated primaquines II. N‐alkyl deuterated primaquines

TL;DR: In this article, two site specific deuterated primaquines were prepared: 1′-Deutero primaquine r was prepared by reductive alkylation of 6-methoxy-8-aminoquinoline with N-(2-oxopentyl)-phthalimide in the presence of sodium cyanoborodeuteride followed by removal of protective phthalimide group.
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Syntheses of the two optical isomers of the insect anti-juvenile hormone agent ethyl p-[2-(t-Butylcarbonyloxy)butoxy]benzoate (ETB) and their biological activities

TL;DR: The optical isomers (9) and (13) of the insect anti-juvenile hormone, (±)-ethyl p-[2-(t-butylcarbonyloxy)butoxy]benzoate (ETB) (14), have been synthesized and their biological activities examined in the tobacco hornworm Manduca sexta.
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