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P-chiral hydroxy phosphoryl compounds

The first P-chiral hydroxy phosphoryl compounds that were enzymatically resolved into enantiomers were o-hydroxyaryl phosphines and their oxides 75. The resolution was achieved via enzyme-assisted hydrolysis of their O-acetyl derivatives 74, the most effective enzymes being CE and Upase from C. rugosa (CRL) (Equation 35). The highest enanfioselectivity was observed in the case of naphthyl derivatives (Equation 36), having a P=0 moiety.  [Pg.186]

Entry R3 Method Solvent Lipase Alcohol 76 Yield ee (%) (abs. (%) conf.) Acetate 77 E Yield ee (%) (abs. (%) conf.) Ref. [Pg.188]

On the basis of this result, a method was developed which allowed to stereoselectively obtain one diastereomer of the product with a high enantiomeric excess, but in a maximum yield of 25%, starting from a diastereomeric mixture of the substrate (Equation 39).  [Pg.189]

Finally, prochiral bis(hydroxymethyl)phenylphosphine oxide 82 was desym-metrisized using either a lipase-catalysed acetylation (Method A) or hydrolysis of the corresponding diacetyl derivative 83 (Method B), to give the chiral monoacetate 84. Application of the two reverse procedures made it possible to obtain both enantiomerically enriched forms of 84 (Equation 40).  [Pg.190]

desymmetrization of prochiral hydroxyalkylphosphine P-boranes was successfully performed using similar reagents and conditions. In the case of bis(hydroxymethyl)phenylphosphine P-borane 87, both its acetylation and hydrolysis of the diacetyl derivative 89 gave good results, although in addition to the expected monoacetate 88, the diol 87 and diacetate 89 were always present in the reaction mixture (Equation 42). °° [Pg.191]


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10-P-3 Compounds

Chiral compounds

Chiral p-hydroxy

Hydroxy chiral

Hydroxy compounds

P-, phosphorylation

P-chiral

P-chiral compound

P-hydroxy

Phosphoryl compounds

Phosphorylated compounds

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