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Propyl phosphate, hydrolysis

The alkaline hydrolysis of l-methyl-2-propyl phosphate by lanthanum hydroxide gel proceeds in a similar manner with cleavage of the P—O bond and complete retention of configuration 12). [Pg.223]

The use of a lipophilic zinc(II) macrocycle complex, 1-hexadecyl-1,4,7,10-tetraazacyclododecane, to catalyze hydrolysis of lipophilic esters, both phosphate and carboxy (425), links this Section to the previous Section. Here, and in studies of the catalysis of hydrolysis of 4-nitrophenyl acetate by the Zn2+ and Co2+ complexes of tris(4,5-di-n-propyl-2 -imidazolyl)phosphine (426) and of a phosphate triester, a phos-phonate diester, and O-isopropyl methylfluorophosphonate (Sarin) by [Cu(A(A(A/,-trimethyl-A/,-tetradecylethylenediamine)l (427), various micellar effects have been brought into play. Catalysis of carboxylic ester hydrolysis is more effectively catalyzed by A"-methylimidazole-functionalized gold nanoparticles than by micellar catalysis (428). Other reports on mechanisms of metal-assisted carboxy ester hydrolyses deal with copper(II) (429), zinc(II) (430,431), and palladium(II) (432). [Pg.131]

Novozymes, a subtilisin produced by Bacillus licheniformis, was used by Chen et al ° to carry out a dynamic kinetic resolution of benzyl, butyl, or propyl esters of DL-phenylalanine, tyrosine, and leucine. The hydrolysis was performed at pH 8.5 in 2-methyl-2-propanol/water (19 1) and the freed L-amino acids precipitated. The key feature bringing about continual racemization of the remaining D-amino acid esters was the inclusion of 20 mmol 1 pyridoxal phosphate. [Pg.84]

Reports which have clear applications in DNA hydrolysis include one of a dinuclear lanthanum(III) complex that catalyses phosphate diester hydrolysis to give unprecidented rates of reaction and one describing the preparation of two new dinuclear bisimidazolyl-Cu(II) calixarenes and an investigation of these complexes as metalloenzyme models for phosphate diester cleavage. The importance of tuning microenvironments when designing synthetic nucleases is illustrated by a report that intramolecular trans-esterification of 2-hydroxy-propyl-4-nitrophenyl phosphate (84) is up to 5000 times faster in organic solvents than in water/ ... [Pg.115]

Examples of substances that are prone to hydrolysis are acetylsalicylic acid, ampicillin, barbiturates, chloramphenicol, chlordiazepoxide, cocaine, corticosteroid phosphate or succinate esters, proteins, folinic acid, indomethacin, local anaesthetics, paracetamol (acetaminophen), pilocarpine, tropa alkaloids (atropine, scopolamine), xylomethazoline and the antimicrobial preservatives methyl and propyl parahydroxybenzoate. In the field of oncology, melphalan and bendamustine hydrochloride are highly susceptable to hydrolysis with a shelf life of 1.5 h for melphalan and 3.5 h for bendamustine at room temperature. [Pg.437]


See other pages where Propyl phosphate, hydrolysis is mentioned: [Pg.350]    [Pg.448]    [Pg.448]    [Pg.6593]    [Pg.1170]    [Pg.188]    [Pg.103]    [Pg.47]    [Pg.127]    [Pg.82]    [Pg.338]    [Pg.187]    [Pg.201]    [Pg.830]    [Pg.1605]    [Pg.159]   
See also in sourсe #XX -- [ Pg.12 ]




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Phosphates hydrolysis

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