The kinetics of the oxidation of aspirin (ASP) by bromamine-T (BAT), N-bromosuccinimide (NBS), and N-bromophthalimide (NBP) has been studied in aqueous perchloric acid at The oxidation reaction follows identical kinetics with first-order in [oxidant], 303 K. fractional-order in [ASP], and inverse f
Kinetics and mechanism of oxidation of diethyl ketone by N-bromosuccinimide
β Scribed by Kameshwar Singh; J. N. Tiwari; S. P. Mushran
- Publisher
- John Wiley and Sons
- Year
- 1978
- Tongue
- English
- Weight
- 326 KB
- Volume
- 10
- Category
- Article
- ISSN
- 0538-8066
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β¦ Synopsis
Oxidative kinetics of diethyl ketone in perchloric acid media in the presence of mercuric acetate have been studied by using N-bromosuccinimide (NBS) as oxidant in the temperature range of 25"-50"C. It has been found that the order with respect to NBS is zero while with respect to diethyl ketone and [H+], it is unity. Succinimide, sodium perchlorate, and mercuric acetate have an insignificant effect on the reaction rate, while the dielectric effect was negative.
A solvent isotope effect ( k o ~~~l k o ~~o
= 1.6-1.8) at 35Β°C has been observed. On the basis of the available evidences a suitable mechanism consistent with the experimental results has been proposed in which it is suggested that the mechanistic route for NBS oxidation in an acidic medium is through the enol form of the ketone. The magnitude of the solvent effect also supports the mechanism. Various activation parameters have been calculated, and the 1,2-dicarbonyl compound has been identified as the end product of the reaction.
π SIMILAR VOLUMES
## Abstract The kinetics of oxidation of [Cr^III^(Dpc)(Asp)(H~2~O)~2~] (Dpc = dipicolinic acid and Asp = DLβaspartic acid) by __N__βbromosuccinimide (NBS) in aqueous solution have been found to obey the equation: equation image where __k__~2~ is the rate constant for the electron transfer process
## Abstract Mechanistic studies on the oxidation of indole [IND] by HSO in aqueous CH~3~CN medium (80:20 v/v) have been carried out, and the reaction is characterized by the rate law βd[HSO]/dt = __k__[IND][HSO]HSO and SO are probably the respective electrophiles in acidic and basic mediums. Nucleo