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Phosphonates oxidative cleavage

Bohman and Allenmark resolved a series of sulphoxide derivatives of unsaturated malonic acids of the general structure 228. The classical method of resolution via formation of diastereoisomeric salts with cinchonine and quinine has also been used by Kapovits and coworkers " to resolve sulphoxides 229, 230, 231 and 232 which are precursors of chiral sulphuranes. Miko/ajczyk and his coworkers achieved optical resolution of sulphoxide 233 by utilizing the phosphonic acid moiety for salt formation with quinine. The racemic sulphinylacetic acid 234, which has a second centre of chirality on the a-carbon atom, was resolved into pure diastereoisomers by Holmberg. Racemic 2-hydroxy- and 4-hydroxyphenyl alkyl sulphoxides were separated via the diastereoisomeric 2- or 4-(tetra-0-acetyl-D-glucopyranosyloxy)phenyl alkyl sulphoxides 235. The optically active sulphoxides were recovered from the isolated diastereoisomers 235 by deacetylation with base and cleavage of the acetal. Racemic 1,3-dithian-l-oxide 236... [Pg.285]

The addition of any one of several dialkyl chlorophosphates to an arylalkyne-derived vinyl zirconocene in the presence of catalytic amounts of CuBr in THF leads to the corresponding vinyl phosphonate in high yields (78—92% see, for example, Scheme 4.38) [25]. Here, alkyl-substituted acetylenic starting materials do not react beyond the initial hydrozirconation stage. Vinyl phosphonates may be readily converted to acyloins by oxidation to the diol followed by base-induced cleavage. [Pg.129]

Of interest in this section are phosphonates (R-P(=0)(-OR )(-OR")), including bisphosphonates (R-CH(P03H2)2) and phosphonoformates ((R0-)(R 0-)P(=0)(C00R")) phosphinates (RR P(=0)(-OR")) will also be mentioned briefly. In contrast to phosphates, alkyl phosphonates are not likely to be hydrolyzed by esterases due to lower acidity, a different shape, and, in some cases, the inability to undergo pseudorotation [118]. This increases the probability of alternative cleavage pathways, in particular oxidative ones, as documented below. [Pg.580]

Quite recently it was shown that phosphonic esters, trimethylsilyl [124, 143] and alkyl esters [124,143, 145] could also be used to modify the surface of titanium or aluminum oxide in organic solvents at moderate temperatures. Unlike Si-O-C bonds, P-O-C bonds are not easily hydrolyzed, and their cleavage on an oxide surface was unexpected. Most probably, coordination of the phosphoryl oxygen to the surface assists the condensation by increasing the electrophilicity of the P atom, thus facilitating the condensation of P-0-R groups with surface hydroxyls (Scheme 7) [124]. The chemisorption of... [Pg.165]

Phosphonamidates are usually prepared by coupling an activated phosphonate monoester with the amine of interest. Since most phosphonate amino add analogues are prepared as their diesters, this procedure first requires selective cleavage to the monoester. Activation from the phosphonic acid oxidation level typically involves preparation of the phosphono-chloridate, but it can also be accomplished by chlorination of an H-phosphinic acid analogue. [Pg.510]

As expected, the reaction of the lithium salts of phosphonates with oxygen results in the formation of dialkyl phosphoric acids-8 and carbonyl products i.e. the cleavage of the C-P bond takes place (, 5). However, when the halomagnesiurn salts of phosphonates Z were oxidized, a-hydroxyphosphonates 2 were formed. [Pg.57]


See other pages where Phosphonates oxidative cleavage is mentioned: [Pg.440]    [Pg.588]    [Pg.125]    [Pg.99]    [Pg.346]    [Pg.386]    [Pg.440]    [Pg.440]    [Pg.15]    [Pg.126]    [Pg.207]    [Pg.81]    [Pg.116]    [Pg.301]    [Pg.729]    [Pg.442]    [Pg.285]    [Pg.1235]    [Pg.161]    [Pg.178]    [Pg.526]    [Pg.337]    [Pg.165]    [Pg.150]    [Pg.440]    [Pg.411]    [Pg.413]    [Pg.416]    [Pg.418]    [Pg.130]    [Pg.247]    [Pg.352]    [Pg.440]    [Pg.961]    [Pg.500]    [Pg.519]    [Pg.69]    [Pg.729]    [Pg.127]    [Pg.130]    [Pg.58]    [Pg.58]    [Pg.64]    [Pg.26]   
See also in sourсe #XX -- [ Pg.563 , Pg.564 ]




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Oxidation phosphonates

Phosphonate, cleavage

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