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Phosphine oxides from phosphorus esters

If a nucleophilic addition at a carbonyl or imine carbon occurs, the product is still a phosphinate (from a phosphonous ester) or a phosphine oxide (from a phosphinous ester), but the reaction is commonly referred to as an Abramov or Pudovik reaction. An example of the Pudovik reaction is shown below (equation 16). Addition of the phosphorus nucleophile to the /3-carbon atom of an a, /3-unsaturated substrate (Michael addition) is commonly referred to as a hydrophosphinylation reaction. ... [Pg.3750]

The Michael-Arbuzov rearrangement is a basic reaction for the preparation of 4-coordinate species including phosphine oxides from 3-coordinate phosphorus esters, such as phosphinous esters. In most cases, the reaction requires a prolonged heating above 100 °C. Odinets et al. have now succeeded in carr5nng out the Arbuzov-reaction of ethyl diphenylphosphinite with a variety of alkyl halides in ionic liquids at or below 110 °C in short reaction times, mostly within half an hour. The best ionic liquid was l-hexyl-3-methylimidazolium bromide (Scheme 2). The recovered [hmim]Br could be recycled at least five times without a decrease in activity. [Pg.72]

Sodium dihydridobis-(2-methoxyethoxo)aluminate Formation of phosphorus-carbon bonds Phosphine oxides from phosphinic acid esters... [Pg.462]

Tertiary phosphine oxides and sulfides are also produced by way of the Michaelis-Arbuzov reaction beginning with phosphonous esters [R2POR ] and thiophosphonous esters [R2PSR ], when used in reaction with haloalkanes (see Section 3.5). Similarly, phosphine oxides are formed from trivalent phosphorus reagents in the Michaelis-Becker reaction as well as the conjugate addition reactions of phosphinous acid derivatives with a, -unsaturated compounds (see Section 3.5). [Pg.3753]

Attempted nitration of dichloro(phenyl)phosphine under mild conditions results only in oxidation at phosphorus.The phosphinate esters (95) have been isolated from the reactions of chlorodialkylphosphines with 1,l-dichloro-l-nitrosoalkanes. [Pg.19]

Requisite diastereomerically enriched menthyl phosphinates may be conveniently obtained by unexceptional methods and examples which constitute the partial realization of this scheme for configurational intercorrelations are shown in Chart II. The absolute configurations of menthyl esters 1 and 2 follow from their correlation with 3, whose chirality at phosphorus is known from X-ray analysis ). The stereochemical direction (inversion) of these highly stereospecific Grignard reactions, and thus the absolute configurations of the derived optically active phosphine oxides, was established by chemical correlations with a second reference compound (4) of known absolute configuration . [Pg.63]

The Wittig reaction involves the interaction of an aldehyde or ketone with a phosphorus-containing carbanionic species, in which the phosphorus is bonded directly to the carbanionic site. At the time of discovery of the reaction, that specification described the triphenylphosphonium alkylides 343 later developments employed the anions from tert-phosphine oxides, the use of which has been described elsewhere in this series and also from a wide variety of phosphonic and phosphinic esters. This latter application will be considered more fully in Chapter 6. An early application of the reaction to the synthesis of alkenephosphonic acids, and which involved an ylide, employed the stable compound 344, generated from 345 by the action of a strong base. Reactions between 344 and aliphatic or aromatic aldehydes at 100 °C in toluene or dmso gave the diphenyl esters of (alk-1-enyl)phosphonic acids or (2-arylethenyl)phosphonic acids. ... [Pg.123]

In the simplest form of the Abramov reaction, the phosphorus-containing reactant is hypophosphorous acid (phosphinic acid) or an ester thereof, and in the reactions between the acid and formaldehyde or benzaldehyde the initial product is the phosphinic acid 144 (R = H or Ph.). However, the reaction can proceed further to give the bis(l-hydroxyalkyl)phosphinic acid (145 R = H or Ph) the latter (R = Ph) reacts readily with yet more benzaldehyde to give its benzylidene derivative, 5-hydroxy-2,4,6-triphenyl-1,3,5-dioxaphosphorinane 5-oxide (146 R = Ph). When acted on by a second mole of cyclohexanone in the presence of acetyl chloride, (l-hydroxycyclohexyl)phosphinic acid (147) gives the novel phosphinic chloride 148, characterized as the free acid 149 following ready hydrolysis A reaction between a phosphinic acid (150) and a second (non-identical) carbonyl compound leads to an unsymmetrical phosphinic acid (151). Esters of symmetrical 1, r-dihydroxy-substituted phosphinic acids are preparable from hypophosphite esters, H2P(0)0R ". ... [Pg.177]


See other pages where Phosphine oxides from phosphorus esters is mentioned: [Pg.251]    [Pg.315]    [Pg.469]    [Pg.293]    [Pg.349]    [Pg.185]    [Pg.3749]    [Pg.411]    [Pg.47]    [Pg.210]    [Pg.1370]    [Pg.8]    [Pg.28]    [Pg.13]    [Pg.27]    [Pg.28]    [Pg.50]    [Pg.132]    [Pg.730]    [Pg.8]    [Pg.3748]    [Pg.50]    [Pg.86]    [Pg.210]    [Pg.498]    [Pg.616]    [Pg.16]    [Pg.7]    [Pg.22]    [Pg.406]    [Pg.4]    [Pg.10]    [Pg.16]    [Pg.20]    [Pg.839]    [Pg.1929]    [Pg.16]    [Pg.1090]    [Pg.33]   
See also in sourсe #XX -- [ Pg.34 , Pg.35 , Pg.36 , Pg.39 , Pg.40 , Pg.41 , Pg.47 ]




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Esters oxidation

PHOSPHORUS ESTERS

Phosphine oxides

Phosphine oxides oxidation

Phosphines esters

Phosphinous Esters

Phosphorus oxidative

Phosphorus oxides

Phosphorus oxids

Phosphorus phosphine

Phosphorus, oxidation

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